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1
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2 ImportedSubstrateList<- read.csv("input1", stringsAsFactors=FALSE)
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3 NegativeSubstrateList<- read.csv("input2", stringsAsFactors=FALSE)
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4 SubstrateBackgroundFrequency<- read.csv("input3", stringsAsFactors=FALSE)
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5
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6 ScreenerFilename<-"screener"
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7
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8
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9
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10 FILENAME<-"output1.csv"
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11 FILENAME2<-"output2.csv"
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12 FILENAME3<-"output3.csv"
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34
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35
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36
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37 OutputMatrix<-"KinaseMatrix.csv"
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38 CharacterizationTable<-"CharacterizationTableForThisKinase.csv"
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39 SDtable<-"SDtableforthisKinase"
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40 SiteSelectivityTable<-"SiteSelectivityForThisKinase"
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41
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42
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43
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44 substrates<-matrix(rep("A",times=((nrow(ImportedSubstrateList)-1)*15)),ncol = 15)
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45 #SeqsToBeScored<-"asdasd"
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46
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47 for (i in 2:nrow(ImportedSubstrateList))
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48 {
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49 substratemotif<-ImportedSubstrateList[i,4:18]
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50 substratemotif[8]<-"Y"
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51 #substratemotif<-paste(substratemotif,sep = "",collapse = "")
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52 j=i-1
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53 substratemotif<-unlist(substratemotif)
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54 substrates[j,1:15]<-substratemotif
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55 }
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56
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57 # SpacesToOs<-c(""="O",)
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58 # substrates<-SpacesToOs[substrates]
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59
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60 SubstrateBackgroundFrequency[nrow(SubstrateBackgroundFrequency),2]
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61
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62 if(2==2){
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63 Amean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),2]), na.rm=TRUE)
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64 Cmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),3]), na.rm=TRUE)
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65 Dmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),4]), na.rm=TRUE)
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66 Emean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),5]), na.rm=TRUE)
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67 Fmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),6]), na.rm=TRUE)
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68 Gmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),7]), na.rm=TRUE)
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69 Hmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),8]), na.rm=TRUE)
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70 Imean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),9]), na.rm=TRUE)
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71 Kmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),10]), na.rm=TRUE)
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72 Lmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),11]), na.rm=TRUE)
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73 Mmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),12]), na.rm=TRUE)
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74 Nmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),13]), na.rm=TRUE)
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75 Pmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),14]), na.rm=TRUE)
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76 Qmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),15]), na.rm=TRUE)
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77 Rmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),16]), na.rm=TRUE)
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78 Smean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),17]), na.rm=TRUE)
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79 Tmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),18]), na.rm=TRUE)
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80 Vmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),19]), na.rm=TRUE)
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81 Wmean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),20]), na.rm=TRUE)
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82 Ymean<-mean(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),21]), na.rm=TRUE)
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83
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84 AllMeans<-c(Amean,Cmean,Dmean,Emean,Fmean,Gmean,Hmean,Imean,Kmean,Lmean,Mmean,Nmean,Pmean,Qmean,Rmean,Smean,Tmean,Vmean,Wmean,Ymean)
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85
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86 Asd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),2]), na.rm=TRUE)
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87 Csd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),3]), na.rm=TRUE)
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88 Dsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),4]), na.rm=TRUE)
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89 Esd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),5]), na.rm=TRUE)
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90 Fsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),6]), na.rm=TRUE)
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91 Gsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),7]), na.rm=TRUE)
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92 Hsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),8]), na.rm=TRUE)
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93 Isd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),9]), na.rm=TRUE)
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94 Ksd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),10]), na.rm=TRUE)
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95 Lsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),11]), na.rm=TRUE)
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96 Msd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),12]), na.rm=TRUE)
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97 Nsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),13]), na.rm=TRUE)
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98 Psd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),14]), na.rm=TRUE)
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99 Qsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),15]), na.rm=TRUE)
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100 Rsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),16]), na.rm=TRUE)
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101 Ssd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),17]), na.rm=TRUE)
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102 Tsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),18]), na.rm=TRUE)
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103 Vsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),19]), na.rm=TRUE)
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104 Wsd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),20]), na.rm=TRUE)
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105 Ysd<-sd(as.numeric(SubstrateBackgroundFrequency[1:(nrow(SubstrateBackgroundFrequency)),21]), na.rm=TRUE)
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106 }
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107 AllSDs<-c(Asd,Csd,Dsd,Esd,Fsd,Gsd,Hsd,Isd,Ksd,Lsd,Msd,Nsd,Psd,Qsd,Rsd,Ssd,Tsd,Vsd,Wsd,Ysd)
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108 #this is subbackfreq SDs
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109
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110 SBF_statisticalvalues<-cbind(AllMeans,AllSDs)
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111
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112 #create the percent table
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113 if (1==1){
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114 Column1<-substrates[,1]
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115 Column2<-substrates[,2]
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116 Column3<-substrates[,3]
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117 Column4<-substrates[,4]
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118 Column5<-substrates[,5]
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119 Column6<-substrates[,6]
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120 Column7<-substrates[,7]
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121 Column8<-substrates[,8]
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122 Column9<-substrates[,9]
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123 Column10<-substrates[,10]
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124 Column11<-substrates[,11]
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125 Column12<-substrates[,12]
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126 Column13<-substrates[,13]
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127 Column14<-substrates[,14]
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128 Column15<-substrates[,15]
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129
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130 spaces1<-sum((Column1%in% ""))
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131 spaces2<-sum(Column2%in% "")
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132 spaces3<-sum(Column3%in% "")
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133 spaces4<-sum(Column4%in% "")
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134 spaces5<-sum(Column5%in% "")
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135 spaces6<-sum(Column6%in% "")
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136 spaces7<-sum(Column7%in% "")
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137 spaces8<-sum(Column8%in% "")
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138 spaces9<-sum(Column9%in% "")
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139 spaces10<-sum(Column10%in% "")
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140 spaces11<-sum(Column11%in% "")
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141 spaces12<-sum(Column12%in% "")
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142 spaces13<-sum(Column13%in% "")
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143 spaces14<-sum(Column14%in% "")
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144 spaces15<-sum(Column15%in% "")
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145
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146 A1<-sum(Column1 %in% "A")/(length(Column1)-spaces1)
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147 A2<-sum(Column2 %in% "A")/(length(Column2)-spaces2)
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148 A3<-sum(Column3 %in% "A")/(length(Column3)-spaces3)
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149 A4<-sum(Column4 %in% "A")/(length(Column4)-spaces4)
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150 A5<-sum(Column5 %in% "A")/(length(Column5)-spaces5)
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151 A6<-sum(Column6 %in% "A")/(length(Column6)-spaces6)
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152 A7<-sum(Column7 %in% "A")/(length(Column7)-spaces7)
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153 A8<-sum(Column8 %in% "A")/(length(Column8)-spaces8)
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154 A9<-sum(Column9 %in% "A")/(length(Column9)-spaces9)
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155 A10<-sum(Column10 %in% "A")/(length(Column10)-spaces10)
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156 A11<-sum(Column11 %in% "A")/(length(Column11)-spaces11)
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157 A12<-sum(Column12 %in% "A")/(length(Column12)-spaces12)
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158 A13<-sum(Column13 %in% "A")/(length(Column13)-spaces13)
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159 A14<-sum(Column14 %in% "A")/(length(Column14)-spaces14)
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160 A15<-sum(Column15 %in% "A")/(length(Column15)-spaces15)
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161 AllAs<-cbind(A1,A2,A3,A4,A5,A6,A7,A8,A9,A10,A11,A12,A13,A14,A15)
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162
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163 C1<-sum(Column1 %in% "C")/(length(Column1)-spaces1)
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164 C2<-sum(Column2 %in% "C")/(length(Column2)-spaces2)
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165 C3<-sum(Column3 %in% "C")/(length(Column3)-spaces3)
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166 C4<-sum(Column4 %in% "C")/(length(Column4)-spaces4)
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167 C5<-sum(Column5 %in% "C")/(length(Column5)-spaces5)
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168 C6<-sum(Column6 %in% "C")/(length(Column6)-spaces6)
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169 C7<-sum(Column7 %in% "C")/(length(Column7)-spaces7)
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170 C8<-sum(Column8 %in% "C")/(length(Column8)-spaces8)
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171 C9<-sum(Column9 %in% "C")/(length(Column9)-spaces9)
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172 C10<-sum(Column10 %in% "C")/(length(Column10)-spaces10)
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173 C11<-sum(Column11 %in% "C")/(length(Column11)-spaces11)
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174 C12<-sum(Column12 %in% "C")/(length(Column12)-spaces12)
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175 C13<-sum(Column13 %in% "C")/(length(Column13)-spaces13)
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176 C14<-sum(Column14 %in% "C")/(length(Column14)-spaces14)
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177 C15<-sum(Column15 %in% "C")/(length(Column15)-spaces15)
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178 CllCs<-cbind(C1,C2,C3,C4,C5,C6,C7,C8,C9,C10,C11,C12,C13,C14,C15)
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179
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180 D1<-sum(Column1 %in% "D")/(length(Column1)-spaces1)
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181 D2<-sum(Column2 %in% "D")/(length(Column2)-spaces2)
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182 D3<-sum(Column3 %in% "D")/(length(Column3)-spaces3)
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183 D4<-sum(Column4 %in% "D")/(length(Column4)-spaces4)
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184 D5<-sum(Column5 %in% "D")/(length(Column5)-spaces5)
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185 D6<-sum(Column6 %in% "D")/(length(Column6)-spaces6)
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186 D7<-sum(Column7 %in% "D")/(length(Column7)-spaces7)
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187 D8<-sum(Column8 %in% "D")/(length(Column8)-spaces8)
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188 D9<-sum(Column9 %in% "D")/(length(Column9)-spaces9)
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189 D10<-sum(Column10 %in% "D")/(length(Column10)-spaces10)
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190 D11<-sum(Column11 %in% "D")/(length(Column11)-spaces11)
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191 D12<-sum(Column12 %in% "D")/(length(Column12)-spaces12)
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192 D13<-sum(Column13 %in% "D")/(length(Column13)-spaces13)
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193 D14<-sum(Column14 %in% "D")/(length(Column14)-spaces14)
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194 D15<-sum(Column15 %in% "D")/(length(Column15)-spaces15)
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195 DllDs<-cbind(D1,D2,D3,D4,D5,D6,D7,D8,D9,D10,D11,D12,D13,D14,D15)
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196
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197 E1<-sum(Column1 %in% "E")/(length(Column1)-spaces1)
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198 E2<-sum(Column2 %in% "E")/(length(Column2)-spaces2)
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199 E3<-sum(Column3 %in% "E")/(length(Column3)-spaces3)
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200 E4<-sum(Column4 %in% "E")/(length(Column4)-spaces4)
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201 E5<-sum(Column5 %in% "E")/(length(Column5)-spaces5)
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202 E6<-sum(Column6 %in% "E")/(length(Column6)-spaces6)
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203 E7<-sum(Column7 %in% "E")/(length(Column7)-spaces7)
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204 E8<-sum(Column8 %in% "E")/(length(Column8)-spaces8)
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205 E9<-sum(Column9 %in% "E")/(length(Column9)-spaces9)
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206 E10<-sum(Column10 %in% "E")/(length(Column10)-spaces10)
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207 E11<-sum(Column11 %in% "E")/(length(Column11)-spaces11)
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208 E12<-sum(Column12 %in% "E")/(length(Column12)-spaces12)
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209 E13<-sum(Column13 %in% "E")/(length(Column13)-spaces13)
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210 E14<-sum(Column14 %in% "E")/(length(Column14)-spaces14)
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211 E15<-sum(Column15 %in% "E")/(length(Column15)-spaces15)
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212 EllEs<-cbind(E1,E2,E3,E4,E5,E6,E7,E8,E9,E10,E11,E12,E13,E14,E15)
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213
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214
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215 F1<-sum(Column1 %in% "F")/(length(Column1)-spaces1)
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216 F2<-sum(Column2 %in% "F")/(length(Column2)-spaces2)
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217 F3<-sum(Column3 %in% "F")/(length(Column3)-spaces3)
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218 F4<-sum(Column4 %in% "F")/(length(Column4)-spaces4)
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219 F5<-sum(Column5 %in% "F")/(length(Column5)-spaces5)
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220 F6<-sum(Column6 %in% "F")/(length(Column6)-spaces6)
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221 F7<-sum(Column7 %in% "F")/(length(Column7)-spaces7)
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222 F8<-sum(Column8 %in% "F")/(length(Column8)-spaces8)
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223 F9<-sum(Column9 %in% "F")/(length(Column9)-spaces9)
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224 F10<-sum(Column10 %in% "F")/(length(Column10)-spaces10)
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225 F11<-sum(Column11 %in% "F")/(length(Column11)-spaces11)
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226 F12<-sum(Column12 %in% "F")/(length(Column12)-spaces12)
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227 F13<-sum(Column13 %in% "F")/(length(Column13)-spaces13)
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228 F14<-sum(Column14 %in% "F")/(length(Column14)-spaces14)
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229 F15<-sum(Column15 %in% "F")/(length(Column15)-spaces15)
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230 FllFs<-cbind(F1,F2,F3,F4,F5,F6,F7,F8,F9,F10,F11,F12,F13,F14,F15)
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231
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232
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233 G1<-sum(Column1 %in% "G")/(length(Column1)-spaces1)
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234 G2<-sum(Column2 %in% "G")/(length(Column2)-spaces2)
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235 G3<-sum(Column3 %in% "G")/(length(Column3)-spaces3)
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236 G4<-sum(Column4 %in% "G")/(length(Column4)-spaces4)
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237 G5<-sum(Column5 %in% "G")/(length(Column5)-spaces5)
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238 G6<-sum(Column6 %in% "G")/(length(Column6)-spaces6)
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239 G7<-sum(Column7 %in% "G")/(length(Column7)-spaces7)
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240 G8<-sum(Column8 %in% "G")/(length(Column8)-spaces8)
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241 G9<-sum(Column9 %in% "G")/(length(Column9)-spaces9)
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242 G10<-sum(Column10 %in% "G")/(length(Column10)-spaces10)
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243 G11<-sum(Column11 %in% "G")/(length(Column11)-spaces11)
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244 G12<-sum(Column12 %in% "G")/(length(Column12)-spaces12)
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245 G13<-sum(Column13 %in% "G")/(length(Column13)-spaces13)
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246 G14<-sum(Column14 %in% "G")/(length(Column14)-spaces14)
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247 G15<-sum(Column15 %in% "G")/(length(Column15)-spaces15)
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248 GllGs<-cbind(G1,G2,G3,G4,G5,G6,G7,G8,G9,G10,G11,G12,G13,G14,G15)
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249
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250
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251 H1<-sum(Column1 %in% "H")/(length(Column1)-spaces1)
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252 H2<-sum(Column2 %in% "H")/(length(Column2)-spaces2)
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253 H3<-sum(Column3 %in% "H")/(length(Column3)-spaces3)
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254 H4<-sum(Column4 %in% "H")/(length(Column4)-spaces4)
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255 H5<-sum(Column5 %in% "H")/(length(Column5)-spaces5)
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256 H6<-sum(Column6 %in% "H")/(length(Column6)-spaces6)
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257 H7<-sum(Column7 %in% "H")/(length(Column7)-spaces7)
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258 H8<-sum(Column8 %in% "H")/(length(Column8)-spaces8)
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259 H9<-sum(Column9 %in% "H")/(length(Column9)-spaces9)
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260 H10<-sum(Column10 %in% "H")/(length(Column10)-spaces10)
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261 H11<-sum(Column11 %in% "H")/(length(Column11)-spaces11)
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262 H12<-sum(Column12 %in% "H")/(length(Column12)-spaces12)
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263 H13<-sum(Column13 %in% "H")/(length(Column13)-spaces13)
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264 H14<-sum(Column14 %in% "H")/(length(Column14)-spaces14)
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265 H15<-sum(Column15 %in% "H")/(length(Column15)-spaces15)
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266 HllHs<-cbind(H1,H2,H3,H4,H5,H6,H7,H8,H9,H10,H11,H12,H13,H14,H15)
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267
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268
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269 I1<-sum(Column1 %in% "I")/(length(Column1)-spaces1)
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270 I2<-sum(Column2 %in% "I")/(length(Column2)-spaces2)
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271 I3<-sum(Column3 %in% "I")/(length(Column3)-spaces3)
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272 I4<-sum(Column4 %in% "I")/(length(Column4)-spaces4)
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273 I5<-sum(Column5 %in% "I")/(length(Column5)-spaces5)
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274 I6<-sum(Column6 %in% "I")/(length(Column6)-spaces6)
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275 I7<-sum(Column7 %in% "I")/(length(Column7)-spaces7)
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276 I8<-sum(Column8 %in% "I")/(length(Column8)-spaces8)
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277 I9<-sum(Column9 %in% "I")/(length(Column9)-spaces9)
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278 I10<-sum(Column10 %in% "I")/(length(Column10)-spaces10)
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279 I11<-sum(Column11 %in% "I")/(length(Column11)-spaces11)
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280 I12<-sum(Column12 %in% "I")/(length(Column12)-spaces12)
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281 I13<-sum(Column13 %in% "I")/(length(Column13)-spaces13)
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282 I14<-sum(Column14 %in% "I")/(length(Column14)-spaces14)
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283 I15<-sum(Column15 %in% "I")/(length(Column15)-spaces15)
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284 IllIs<-cbind(I1,I2,I3,I4,I5,I6,I7,I8,I9,I10,I11,I12,I13,I14,I15)
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285
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286
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287 K1<-sum(Column1 %in% "K")/(length(Column1)-spaces1)
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288 K2<-sum(Column2 %in% "K")/(length(Column2)-spaces2)
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289 K3<-sum(Column3 %in% "K")/(length(Column3)-spaces3)
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290 K4<-sum(Column4 %in% "K")/(length(Column4)-spaces4)
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291 K5<-sum(Column5 %in% "K")/(length(Column5)-spaces5)
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292 K6<-sum(Column6 %in% "K")/(length(Column6)-spaces6)
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293 K7<-sum(Column7 %in% "K")/(length(Column7)-spaces7)
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294 K8<-sum(Column8 %in% "K")/(length(Column8)-spaces8)
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295 K9<-sum(Column9 %in% "K")/(length(Column9)-spaces9)
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296 K10<-sum(Column10 %in% "K")/(length(Column10)-spaces10)
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297 K11<-sum(Column11 %in% "K")/(length(Column11)-spaces11)
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298 K12<-sum(Column12 %in% "K")/(length(Column12)-spaces12)
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299 K13<-sum(Column13 %in% "K")/(length(Column13)-spaces13)
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300 K14<-sum(Column14 %in% "K")/(length(Column14)-spaces14)
|
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301 K15<-sum(Column15 %in% "K")/(length(Column15)-spaces15)
|
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302 KllKs<-cbind(K1,K2,K3,K4,K5,K6,K7,K8,K9,K10,K11,K12,K13,K14,K15)
|
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303
|
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304
|
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305 L1<-sum(Column1 %in% "L")/(length(Column1)-spaces1)
|
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306 L2<-sum(Column2 %in% "L")/(length(Column2)-spaces2)
|
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307 L3<-sum(Column3 %in% "L")/(length(Column3)-spaces3)
|
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308 L4<-sum(Column4 %in% "L")/(length(Column4)-spaces4)
|
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309 L5<-sum(Column5 %in% "L")/(length(Column5)-spaces5)
|
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310 L6<-sum(Column6 %in% "L")/(length(Column6)-spaces6)
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311 L7<-sum(Column7 %in% "L")/(length(Column7)-spaces7)
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312 L8<-sum(Column8 %in% "L")/(length(Column8)-spaces8)
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313 L9<-sum(Column9 %in% "L")/(length(Column9)-spaces9)
|
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314 L10<-sum(Column10 %in% "L")/(length(Column10)-spaces10)
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315 L11<-sum(Column11 %in% "L")/(length(Column11)-spaces11)
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316 L12<-sum(Column12 %in% "L")/(length(Column12)-spaces12)
|
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317 L13<-sum(Column13 %in% "L")/(length(Column13)-spaces13)
|
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318 L14<-sum(Column14 %in% "L")/(length(Column14)-spaces14)
|
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319 L15<-sum(Column15 %in% "L")/(length(Column15)-spaces15)
|
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320 LllLs<-cbind(L1,L2,L3,L4,L5,L6,L7,L8,L9,L10,L11,L12,L13,L14,L15)
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321
|
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322
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323 M1<-sum(Column1 %in% "M")/(length(Column1)-spaces1)
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324 M2<-sum(Column2 %in% "M")/(length(Column2)-spaces2)
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325 M3<-sum(Column3 %in% "M")/(length(Column3)-spaces3)
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326 M4<-sum(Column4 %in% "M")/(length(Column4)-spaces4)
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327 M5<-sum(Column5 %in% "M")/(length(Column5)-spaces5)
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328 M6<-sum(Column6 %in% "M")/(length(Column6)-spaces6)
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329 M7<-sum(Column7 %in% "M")/(length(Column7)-spaces7)
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330 M8<-sum(Column8 %in% "M")/(length(Column8)-spaces8)
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331 M9<-sum(Column9 %in% "M")/(length(Column9)-spaces9)
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332 M10<-sum(Column10 %in% "M")/(length(Column10)-spaces10)
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333 M11<-sum(Column11 %in% "M")/(length(Column11)-spaces11)
|
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334 M12<-sum(Column12 %in% "M")/(length(Column12)-spaces12)
|
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335 M13<-sum(Column13 %in% "M")/(length(Column13)-spaces13)
|
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336 M14<-sum(Column14 %in% "M")/(length(Column14)-spaces14)
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337 M15<-sum(Column15 %in% "M")/(length(Column15)-spaces15)
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338 MllMs<-cbind(M1,M2,M3,M4,M5,M6,M7,M8,M9,M10,M11,M12,M13,M14,M15)
|
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339
|
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340
|
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341 N1<-sum(Column1 %in% "N")/(length(Column1)-spaces1)
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342 N2<-sum(Column2 %in% "N")/(length(Column2)-spaces2)
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343 N3<-sum(Column3 %in% "N")/(length(Column3)-spaces3)
|
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344 N4<-sum(Column4 %in% "N")/(length(Column4)-spaces4)
|
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345 N5<-sum(Column5 %in% "N")/(length(Column5)-spaces5)
|
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346 N6<-sum(Column6 %in% "N")/(length(Column6)-spaces6)
|
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347 N7<-sum(Column7 %in% "N")/(length(Column7)-spaces7)
|
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348 N8<-sum(Column8 %in% "N")/(length(Column8)-spaces8)
|
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349 N9<-sum(Column9 %in% "N")/(length(Column9)-spaces9)
|
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350 N10<-sum(Column10 %in% "N")/(length(Column10)-spaces10)
|
|
351 N11<-sum(Column11 %in% "N")/(length(Column11)-spaces11)
|
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352 N12<-sum(Column12 %in% "N")/(length(Column12)-spaces12)
|
|
353 N13<-sum(Column13 %in% "N")/(length(Column13)-spaces13)
|
|
354 N14<-sum(Column14 %in% "N")/(length(Column14)-spaces14)
|
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355 N15<-sum(Column15 %in% "N")/(length(Column15)-spaces15)
|
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356 NllNs<-cbind(N1,N2,N3,N4,N5,N6,N7,N8,N9,N10,N11,N12,N13,N14,N15)
|
|
357
|
|
358
|
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359 P1<-sum(Column1 %in% "P")/(length(Column1)-spaces1)
|
|
360 P2<-sum(Column2 %in% "P")/(length(Column2)-spaces2)
|
|
361 P3<-sum(Column3 %in% "P")/(length(Column3)-spaces3)
|
|
362 P4<-sum(Column4 %in% "P")/(length(Column4)-spaces4)
|
|
363 P5<-sum(Column5 %in% "P")/(length(Column5)-spaces5)
|
|
364 P6<-sum(Column6 %in% "P")/(length(Column6)-spaces6)
|
|
365 P7<-sum(Column7 %in% "P")/(length(Column7)-spaces7)
|
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366 P8<-sum(Column8 %in% "P")/(length(Column8)-spaces8)
|
|
367 P9<-sum(Column9 %in% "P")/(length(Column9)-spaces9)
|
|
368 P10<-sum(Column10 %in% "P")/(length(Column10)-spaces10)
|
|
369 P11<-sum(Column11 %in% "P")/(length(Column11)-spaces11)
|
|
370 P12<-sum(Column12 %in% "P")/(length(Column12)-spaces12)
|
|
371 P13<-sum(Column13 %in% "P")/(length(Column13)-spaces13)
|
|
372 P14<-sum(Column14 %in% "P")/(length(Column14)-spaces14)
|
|
373 P15<-sum(Column15 %in% "P")/(length(Column15)-spaces15)
|
|
374 PllPs<-cbind(P1,P2,P3,P4,P5,P6,P7,P8,P9,P10,P11,P12,P13,P14,P15)
|
|
375
|
|
376
|
|
377 Q1<-sum(Column1 %in% "Q")/(length(Column1)-spaces1)
|
|
378 Q2<-sum(Column2 %in% "Q")/(length(Column2)-spaces2)
|
|
379 Q3<-sum(Column3 %in% "Q")/(length(Column3)-spaces3)
|
|
380 Q4<-sum(Column4 %in% "Q")/(length(Column4)-spaces4)
|
|
381 Q5<-sum(Column5 %in% "Q")/(length(Column5)-spaces5)
|
|
382 Q6<-sum(Column6 %in% "Q")/(length(Column6)-spaces6)
|
|
383 Q7<-sum(Column7 %in% "Q")/(length(Column7)-spaces7)
|
|
384 Q8<-sum(Column8 %in% "Q")/(length(Column8)-spaces8)
|
|
385 Q9<-sum(Column9 %in% "Q")/(length(Column9)-spaces9)
|
|
386 Q10<-sum(Column10 %in% "Q")/(length(Column10)-spaces10)
|
|
387 Q11<-sum(Column11 %in% "Q")/(length(Column11)-spaces11)
|
|
388 Q12<-sum(Column12 %in% "Q")/(length(Column12)-spaces12)
|
|
389 Q13<-sum(Column13 %in% "Q")/(length(Column13)-spaces13)
|
|
390 Q14<-sum(Column14 %in% "Q")/(length(Column14)-spaces14)
|
|
391 Q15<-sum(Column15 %in% "Q")/(length(Column15)-spaces15)
|
|
392 QllQs<-cbind(Q1,Q2,Q3,Q4,Q5,Q6,Q7,Q8,Q9,Q10,Q11,Q12,Q13,Q14,Q15)
|
|
393
|
|
394
|
|
395 R1<-sum(Column1 %in% "R")/(length(Column1)-spaces1)
|
|
396 R2<-sum(Column2 %in% "R")/(length(Column2)-spaces2)
|
|
397 R3<-sum(Column3 %in% "R")/(length(Column3)-spaces3)
|
|
398 R4<-sum(Column4 %in% "R")/(length(Column4)-spaces4)
|
|
399 R5<-sum(Column5 %in% "R")/(length(Column5)-spaces5)
|
|
400 R6<-sum(Column6 %in% "R")/(length(Column6)-spaces6)
|
|
401 R7<-sum(Column7 %in% "R")/(length(Column7)-spaces7)
|
|
402 R8<-sum(Column8 %in% "R")/(length(Column8)-spaces8)
|
|
403 R9<-sum(Column9 %in% "R")/(length(Column9)-spaces9)
|
|
404 R10<-sum(Column10 %in% "R")/(length(Column10)-spaces10)
|
|
405 R11<-sum(Column11 %in% "R")/(length(Column11)-spaces11)
|
|
406 R12<-sum(Column12 %in% "R")/(length(Column12)-spaces12)
|
|
407 R13<-sum(Column13 %in% "R")/(length(Column13)-spaces13)
|
|
408 R14<-sum(Column14 %in% "R")/(length(Column14)-spaces14)
|
|
409 R15<-sum(Column15 %in% "R")/(length(Column15)-spaces15)
|
|
410 RllRs<-cbind(R1,R2,R3,R4,R5,R6,R7,R8,R9,R10,R11,R12,R13,R14,R15)
|
|
411
|
|
412
|
|
413 S1<-sum(Column1 %in% "S")/(length(Column1)-spaces1)
|
|
414 S2<-sum(Column2 %in% "S")/(length(Column2)-spaces2)
|
|
415 S3<-sum(Column3 %in% "S")/(length(Column3)-spaces3)
|
|
416 S4<-sum(Column4 %in% "S")/(length(Column4)-spaces4)
|
|
417 S5<-sum(Column5 %in% "S")/(length(Column5)-spaces5)
|
|
418 S6<-sum(Column6 %in% "S")/(length(Column6)-spaces6)
|
|
419 S7<-sum(Column7 %in% "S")/(length(Column7)-spaces7)
|
|
420 S8<-sum(Column8 %in% "S")/(length(Column8)-spaces8)
|
|
421 S9<-sum(Column9 %in% "S")/(length(Column9)-spaces9)
|
|
422 S10<-sum(Column10 %in% "S")/(length(Column10)-spaces10)
|
|
423 S11<-sum(Column11 %in% "S")/(length(Column11)-spaces11)
|
|
424 S12<-sum(Column12 %in% "S")/(length(Column12)-spaces12)
|
|
425 S13<-sum(Column13 %in% "S")/(length(Column13)-spaces13)
|
|
426 S14<-sum(Column14 %in% "S")/(length(Column14)-spaces14)
|
|
427 S15<-sum(Column15 %in% "S")/(length(Column15)-spaces15)
|
|
428 SllSs<-cbind(S1,S2,S3,S4,S5,S6,S7,S8,S9,S10,S11,S12,S13,S14,S15)
|
|
429
|
|
430
|
|
431 T1<-sum(Column1 %in% "T")/(length(Column1)-spaces1)
|
|
432 T2<-sum(Column2 %in% "T")/(length(Column2)-spaces2)
|
|
433 T3<-sum(Column3 %in% "T")/(length(Column3)-spaces3)
|
|
434 T4<-sum(Column4 %in% "T")/(length(Column4)-spaces4)
|
|
435 T5<-sum(Column5 %in% "T")/(length(Column5)-spaces5)
|
|
436 T6<-sum(Column6 %in% "T")/(length(Column6)-spaces6)
|
|
437 T7<-sum(Column7 %in% "T")/(length(Column7)-spaces7)
|
|
438 T8<-sum(Column8 %in% "T")/(length(Column8)-spaces8)
|
|
439 T9<-sum(Column9 %in% "T")/(length(Column9)-spaces9)
|
|
440 T10<-sum(Column10 %in% "T")/(length(Column10)-spaces10)
|
|
441 T11<-sum(Column11 %in% "T")/(length(Column11)-spaces11)
|
|
442 T12<-sum(Column12 %in% "T")/(length(Column12)-spaces12)
|
|
443 T13<-sum(Column13 %in% "T")/(length(Column13)-spaces13)
|
|
444 T14<-sum(Column14 %in% "T")/(length(Column14)-spaces14)
|
|
445 T15<-sum(Column15 %in% "T")/(length(Column15)-spaces15)
|
|
446 TllTs<-cbind(T1,T2,T3,T4,T5,T6,T7,T8,T9,T10,T11,T12,T13,T14,T15)
|
|
447
|
|
448
|
|
449 V1<-sum(Column1 %in% "V")/(length(Column1)-spaces1)
|
|
450 V2<-sum(Column2 %in% "V")/(length(Column2)-spaces2)
|
|
451 V3<-sum(Column3 %in% "V")/(length(Column3)-spaces3)
|
|
452 V4<-sum(Column4 %in% "V")/(length(Column4)-spaces4)
|
|
453 V5<-sum(Column5 %in% "V")/(length(Column5)-spaces5)
|
|
454 V6<-sum(Column6 %in% "V")/(length(Column6)-spaces6)
|
|
455 V7<-sum(Column7 %in% "V")/(length(Column7)-spaces7)
|
|
456 V8<-sum(Column8 %in% "V")/(length(Column8)-spaces8)
|
|
457 V9<-sum(Column9 %in% "V")/(length(Column9)-spaces9)
|
|
458 V10<-sum(Column10 %in% "V")/(length(Column10)-spaces10)
|
|
459 V11<-sum(Column11 %in% "V")/(length(Column11)-spaces11)
|
|
460 V12<-sum(Column12 %in% "V")/(length(Column12)-spaces12)
|
|
461 V13<-sum(Column13 %in% "V")/(length(Column13)-spaces13)
|
|
462 V14<-sum(Column14 %in% "V")/(length(Column14)-spaces14)
|
|
463 V15<-sum(Column15 %in% "V")/(length(Column15)-spaces15)
|
|
464 VllVs<-cbind(V1,V2,V3,V4,V5,V6,V7,V8,V9,V10,V11,V12,V13,V14,V15)
|
|
465
|
|
466
|
|
467 W1<-sum(Column1 %in% "W")/(length(Column1)-spaces1)
|
|
468 W2<-sum(Column2 %in% "W")/(length(Column2)-spaces2)
|
|
469 W3<-sum(Column3 %in% "W")/(length(Column3)-spaces3)
|
|
470 W4<-sum(Column4 %in% "W")/(length(Column4)-spaces4)
|
|
471 W5<-sum(Column5 %in% "W")/(length(Column5)-spaces5)
|
|
472 W6<-sum(Column6 %in% "W")/(length(Column6)-spaces6)
|
|
473 W7<-sum(Column7 %in% "W")/(length(Column7)-spaces7)
|
|
474 W8<-sum(Column8 %in% "W")/(length(Column8)-spaces8)
|
|
475 W9<-sum(Column9 %in% "W")/(length(Column9)-spaces9)
|
|
476 W10<-sum(Column10 %in% "W")/(length(Column10)-spaces10)
|
|
477 W11<-sum(Column11 %in% "W")/(length(Column11)-spaces11)
|
|
478 W12<-sum(Column12 %in% "W")/(length(Column12)-spaces12)
|
|
479 W13<-sum(Column13 %in% "W")/(length(Column13)-spaces13)
|
|
480 W14<-sum(Column14 %in% "W")/(length(Column14)-spaces14)
|
|
481 W15<-sum(Column15 %in% "W")/(length(Column15)-spaces15)
|
|
482 WllWs<-cbind(W1,W2,W3,W4,W5,W6,W7,W8,W9,W10,W11,W12,W13,W14,W15)
|
|
483
|
|
484
|
|
485 Y1<-sum(Column1 %in% "Y")/(length(Column1)-spaces1)
|
|
486 Y2<-sum(Column2 %in% "Y")/(length(Column2)-spaces2)
|
|
487 Y3<-sum(Column3 %in% "Y")/(length(Column3)-spaces3)
|
|
488 Y4<-sum(Column4 %in% "Y")/(length(Column4)-spaces4)
|
|
489 Y5<-sum(Column5 %in% "Y")/(length(Column5)-spaces5)
|
|
490 Y6<-sum(Column6 %in% "Y")/(length(Column6)-spaces6)
|
|
491 Y7<-sum(Column7 %in% "Y")/(length(Column7)-spaces7)
|
|
492 Y8<-sum(Column8 %in% "Y")/(length(Column8)-spaces8)
|
|
493 Y9<-sum(Column9 %in% "Y")/(length(Column9)-spaces9)
|
|
494 Y10<-sum(Column10 %in% "Y")/(length(Column10)-spaces10)
|
|
495 Y11<-sum(Column11 %in% "Y")/(length(Column11)-spaces11)
|
|
496 Y12<-sum(Column12 %in% "Y")/(length(Column12)-spaces12)
|
|
497 Y13<-sum(Column13 %in% "Y")/(length(Column13)-spaces13)
|
|
498 Y14<-sum(Column14 %in% "Y")/(length(Column14)-spaces14)
|
|
499 Y15<-sum(Column15 %in% "Y")/(length(Column15)-spaces15)
|
|
500 YllYs<-cbind(Y1,Y2,Y3,Y4,Y5,Y6,Y7,Y8,Y9,Y10,Y11,Y12,Y13,Y14,Y15)
|
|
501 }
|
|
502 #this is substrate percents
|
|
503
|
|
504 #A C D E F G H I K L N P Q R S T V W Y
|
|
505
|
|
506 PercentTable<-rbind(AllAs,CllCs,DllDs,EllEs,FllFs,GllGs,HllHs,IllIs,KllKs,LllLs,MllMs,NllNs,PllPs,QllQs,RllRs,SllSs,TllTs,VllVs,WllWs,YllYs)
|
|
507 PercentTable<-PercentTable*100
|
|
508
|
|
509 #create the SD table
|
|
510 SDtable<-matrix(data = rep(1,times=(nrow(PercentTable)*ncol(PercentTable))),nrow = nrow(PercentTable),ncol = ncol(PercentTable))
|
|
511 #for every row, a percertage minus the same mean over the same SD
|
|
512 if(1==1){
|
|
513 SDtable[1,]<-(PercentTable[1,]-Amean)/Asd
|
|
514 SDtable[2,]<-(PercentTable[2,]-Cmean)/Csd
|
|
515 SDtable[3,]<-(PercentTable[3,]-Dmean)/Dsd
|
|
516 SDtable[4,]<-(PercentTable[4,]-Emean)/Esd
|
|
517 SDtable[5,]<-(PercentTable[5,]-Fmean)/Fsd
|
|
518 SDtable[6,]<-(PercentTable[6,]-Gmean)/Gsd
|
|
519 SDtable[7,]<-(PercentTable[7,]-Hmean)/Hsd
|
|
520 SDtable[8,]<-(PercentTable[8,]-Imean)/Isd
|
|
521 SDtable[9,]<-(PercentTable[9,]-Kmean)/Ksd
|
|
522 SDtable[10,]<-(PercentTable[10,]-Lmean)/Lsd
|
|
523 SDtable[11,]<-(PercentTable[11,]-Mmean)/Msd
|
|
524 SDtable[12,]<-(PercentTable[12,]-Nmean)/Nsd
|
|
525 SDtable[13,]<-(PercentTable[13,]-Pmean)/Psd
|
|
526 SDtable[14,]<-(PercentTable[14,]-Qmean)/Qsd
|
|
527 SDtable[15,]<-(PercentTable[15,]-Rmean)/Rsd
|
|
528 SDtable[16,]<-(PercentTable[16,]-Smean)/Ssd
|
|
529 SDtable[17,]<-(PercentTable[17,]-Tmean)/Tsd
|
|
530 SDtable[18,]<-(PercentTable[18,]-Vmean)/Vsd
|
|
531 SDtable[19,]<-(PercentTable[19,]-Wmean)/Wsd
|
|
532 SDtable[20,]<-(PercentTable[20,]-Ymean)/Ysd
|
|
533 }
|
|
534
|
|
535
|
|
536 SetOfAAs<-c("Letter","A","C","D","E","F","G","H","I","K","L","M","N","P","Q","R","S","T","V","W","Y")
|
|
537
|
|
538
|
|
539 SumOfSigmaAAs<-c(1:15)
|
|
540
|
|
541 for (i in 1:15){
|
|
542 SumOfSigmasValue<-0
|
|
543 for (j in 1:20){
|
|
544 value<-0
|
|
545 if (SDtable[j,i]>2){
|
|
546 value<-sum(substrates[,i]==SetOfAAs[j])
|
|
547 }
|
|
548 SumOfSigmasValue<-SumOfSigmasValue+value
|
|
549 }
|
|
550 SumOfSigmaAAs[i]<-SumOfSigmasValue
|
|
551 }
|
|
552
|
|
553 # AAs1<-length(substrates[,1])-sum(substrates[,1]=="")
|
|
554 # AAs2<-length(substrates[,2])-sum(substrates[,2]=="")
|
|
555 # AAs3<-length(substrates[,3])-sum(substrates[,3]=="")
|
|
556 # AAs4<-length(substrates[,4])-sum(substrates[,4]=="")
|
|
557 # AAs5<-length(substrates[,5])-sum(substrates[,5]=="")
|
|
558 # AAs6<-length(substrates[,6])-sum(substrates[,6]=="")
|
|
559 # AAs7<-length(substrates[,7])-sum(substrates[,7]=="")
|
|
560 # AAs8<-length(substrates[,8])-sum(substrates[,8]=="")
|
|
561 # AAs9<-length(substrates[,9])-sum(substrates[,9]=="")
|
|
562 #
|
|
563 #
|
|
564 #
|
|
565 # #AAsAtPositions<-c(AAs1,AAs2,AAs3,AAs4,AAs5,AAs6,AAs7,AAs8,AAs9)
|
|
566 # AAsAtPositions<-c(length(substrates[,1]),length(substrates[,2]),length(substrates[,3]),length(substrates[,4]),
|
|
567 # length(substrates[,5]),length(substrates[,6]),length(substrates[,7]),length(substrates[,8]),
|
|
568 # length(substrates[,9]))
|
|
569
|
|
570 SumOfExpectedSigmaAAs<-c(1:15)
|
|
571 for (i in 1:15){
|
|
572 ExpectedValue<-0
|
|
573 for (j in 1:20){
|
|
574 value<-0
|
|
575 if (SDtable[j,i]>2){
|
|
576 value<-AllMeans[j]
|
|
577 }
|
|
578 ExpectedValue<-ExpectedValue+value
|
|
579 }
|
|
580 SumOfExpectedSigmaAAs[i]<-ExpectedValue*(length(substrates[,i])-sum(substrates[,i]%in% ""))/100
|
|
581 }
|
|
582
|
|
583 SelectivityRow<-SumOfSigmaAAs/SumOfExpectedSigmaAAs
|
|
584 SelectivitySheet<-rbind(SumOfSigmaAAs,SumOfExpectedSigmaAAs,SelectivityRow)
|
|
585
|
|
586 SetOfAAs<-matrix(data = SetOfAAs,ncol = 1)
|
|
587
|
|
588 SDtableu<-SDtable
|
|
589 HeaderSD<-c(-7:7)
|
|
590 SDtable<-rbind(HeaderSD,SDtableu)
|
|
591 row.names(SDtable)<-NULL
|
|
592 SDtable<-data.frame(SetOfAAs,SDtable)
|
|
593
|
|
594 PercentTable<-rbind(HeaderSD,PercentTable)
|
|
595 row.names(PercentTable)<-NULL
|
|
596 PercentTable<-data.frame(SetOfAAs,PercentTable)
|
|
597 numberofY<-as.numeric(SubstrateBackgroundFrequency$Number.of.Y)
|
|
598 numberofY<-numberofY[!is.na(numberofY)]
|
|
599
|
|
600 numberofPY<-as.numeric(SubstrateBackgroundFrequency$Number.of.pY)
|
|
601 numberofPY<-numberofPY[!is.na(numberofPY)]
|
|
602
|
|
603 NormalizationScore<-sum(numberofPY)/sum(numberofY)
|
|
604
|
|
605 # positions<-matrix(data = NA, nrow=20,ncol = 15)
|
|
606 #
|
|
607 # #column1
|
|
608 #
|
|
609 # for (q in 1:15) {
|
|
610 # sA<-sum(substrates[,i]=="A")
|
|
611 # positions[1,i]<-sA
|
|
612 # sC<-sum(substrates[,i]=="C")
|
|
613 # positions[2,i]<-sC
|
|
614 # sD<-sum(substrates[,i]=="D")
|
|
615 # positions[3,i]<-sD
|
|
616 # sE<-sum(substrates[,i]=="E")
|
|
617 # positions[4,i]<-sE
|
|
618 # sF<-sum(substrates[,i]=="F")
|
|
619 # sG<-sum(substrates[,i]=="G")
|
|
620 # sH<-sum(substrates[,i]=="H")
|
|
621 # sI<-sum(substrates[,i]=="I")
|
|
622 # sK<-sum(substrates[,i]=="K")
|
|
623 # sL<-sum(substrates[,i]=="L")
|
|
624 # sM<-sum(substrates[,i]=="M")
|
|
625 # sN<-sum(substrates[,i]=="N")
|
|
626 # sP<-sum(substrates[,i]=="P")
|
|
627 # sQ<-sum(substrates[,i]=="Q")
|
|
628 # sR<-sum(substrates[,i]=="R")
|
|
629 # sS<-sum(substrates[,i]=="S")
|
|
630 # sT<-sum(substrates[,i]=="T")
|
|
631 # sV<-sum(substrates[,i]=="V")
|
|
632 # sW<-sum(substrates[,i]=="W")
|
|
633 # sY<-sum(substrates[,i]=="Y")
|
|
634 # positions[5,i]<-sF
|
|
635 # positions[6,i]<-sG
|
|
636 # positions[7,i]<-sH
|
|
637 # positions[8,i]<-sI
|
|
638 # positions[9,i]<-sK
|
|
639 # positions[10,i]<-sL
|
|
640 # positions[11,i]<-sM
|
|
641 # positions[12,i]<-sN
|
|
642 # positions[13,i]<-sP
|
|
643 # positions[14,i]<-sQ
|
|
644 # positions[15,i]<-sR
|
|
645 # positions[16,i]<-sS
|
|
646 # positions[17,i]<-sT
|
|
647 # positions[18,i]<-sV
|
|
648 # positions[19,i]<-sW
|
|
649 # positions[20,i]<-sY
|
|
650 # }
|
|
651
|
|
652 #here I create the positions table which is needed for the endogenous prob matrix and is simply "how many times did an AA show up in this spot?
|
|
653 if (6==6){
|
|
654 Column1<-substrates[,1]
|
|
655 Column2<-substrates[,2]
|
|
656 Column3<-substrates[,3]
|
|
657 Column4<-substrates[,4]
|
|
658 Column5<-substrates[,5]
|
|
659 Column6<-substrates[,6]
|
|
660 Column7<-substrates[,7]
|
|
661 Column8<-substrates[,8]
|
|
662 Column9<-substrates[,9]
|
|
663 Column10<-substrates[,10]
|
|
664 Column11<-substrates[,11]
|
|
665 Column12<-substrates[,12]
|
|
666 Column13<-substrates[,13]
|
|
667 Column14<-substrates[,14]
|
|
668 Column15<-substrates[,15]
|
|
669
|
|
670 spaces1<-sum((Column1%in% ""))
|
|
671 spaces2<-sum(Column2%in% "")
|
|
672 spaces3<-sum(Column3%in% "")
|
|
673 spaces4<-sum(Column4%in% "")
|
|
674 spaces5<-sum(Column5%in% "")
|
|
675 spaces6<-sum(Column6%in% "")
|
|
676 spaces7<-sum(Column7%in% "")
|
|
677 spaces8<-sum(Column8%in% "")
|
|
678 spaces9<-sum(Column9%in% "")
|
|
679 spaces10<-sum(Column10%in% "")
|
|
680 spaces11<-sum(Column11%in% "")
|
|
681 spaces12<-sum(Column12%in% "")
|
|
682 spaces13<-sum(Column13%in% "")
|
|
683 spaces14<-sum(Column14%in% "")
|
|
684 spaces15<-sum(Column15%in% "")
|
|
685
|
|
686 A1<-sum(Column1 %in% "A")
|
|
687 A2<-sum(Column2 %in% "A")
|
|
688 A3<-sum(Column3 %in% "A")
|
|
689 A4<-sum(Column4 %in% "A")
|
|
690 A5<-sum(Column5 %in% "A")
|
|
691 A6<-sum(Column6 %in% "A")
|
|
692 A7<-sum(Column7 %in% "A")
|
|
693 A8<-sum(Column8 %in% "A")
|
|
694 A9<-sum(Column9 %in% "A")
|
|
695 A10<-sum(Column10 %in% "A")
|
|
696 A11<-sum(Column11 %in% "A")
|
|
697 A12<-sum(Column12 %in% "A")
|
|
698 A13<-sum(Column13 %in% "A")
|
|
699 A14<-sum(Column14 %in% "A")
|
|
700 A15<-sum(Column15 %in% "A")
|
|
701 AllAs<-cbind(A1,A2,A3,A4,A5,A6,A7,A8,A9,A10,A11,A12,A13,A14,A15)
|
|
702
|
|
703 C1<-sum(Column1 %in% "C")
|
|
704 C2<-sum(Column2 %in% "C")
|
|
705 C3<-sum(Column3 %in% "C")
|
|
706 C4<-sum(Column4 %in% "C")
|
|
707 C5<-sum(Column5 %in% "C")
|
|
708 C6<-sum(Column6 %in% "C")
|
|
709 C7<-sum(Column7 %in% "C")
|
|
710 C8<-sum(Column8 %in% "C")
|
|
711 C9<-sum(Column9 %in% "C")
|
|
712 C10<-sum(Column10 %in% "C")
|
|
713 C11<-sum(Column11 %in% "C")
|
|
714 C12<-sum(Column12 %in% "C")
|
|
715 C13<-sum(Column13 %in% "C")
|
|
716 C14<-sum(Column14 %in% "C")
|
|
717 C15<-sum(Column15 %in% "C")
|
|
718 CllCs<-cbind(C1,C2,C3,C4,C5,C6,C7,C8,C9,C10,C11,C12,C13,C14,C15)
|
|
719
|
|
720 D1<-sum(Column1 %in% "D")
|
|
721 D2<-sum(Column2 %in% "D")
|
|
722 D3<-sum(Column3 %in% "D")
|
|
723 D4<-sum(Column4 %in% "D")
|
|
724 D5<-sum(Column5 %in% "D")
|
|
725 D6<-sum(Column6 %in% "D")
|
|
726 D7<-sum(Column7 %in% "D")
|
|
727 D8<-sum(Column8 %in% "D")
|
|
728 D9<-sum(Column9 %in% "D")
|
|
729 D10<-sum(Column10 %in% "D")
|
|
730 D11<-sum(Column11 %in% "D")
|
|
731 D12<-sum(Column12 %in% "D")
|
|
732 D13<-sum(Column13 %in% "D")
|
|
733 D14<-sum(Column14 %in% "D")
|
|
734 D15<-sum(Column15 %in% "D")
|
|
735 DllDs<-cbind(D1,D2,D3,D4,D5,D6,D7,D8,D9,D10,D11,D12,D13,D14,D15)
|
|
736
|
|
737 E1<-sum(Column1 %in% "E")
|
|
738 E2<-sum(Column2 %in% "E")
|
|
739 E3<-sum(Column3 %in% "E")
|
|
740 E4<-sum(Column4 %in% "E")
|
|
741 E5<-sum(Column5 %in% "E")
|
|
742 E6<-sum(Column6 %in% "E")
|
|
743 E7<-sum(Column7 %in% "E")
|
|
744 E8<-sum(Column8 %in% "E")
|
|
745 E9<-sum(Column9 %in% "E")
|
|
746 E10<-sum(Column10 %in% "E")
|
|
747 E11<-sum(Column11 %in% "E")
|
|
748 E12<-sum(Column12 %in% "E")
|
|
749 E13<-sum(Column13 %in% "E")
|
|
750 E14<-sum(Column14 %in% "E")
|
|
751 E15<-sum(Column15 %in% "E")
|
|
752 EllEs<-cbind(E1,E2,E3,E4,E5,E6,E7,E8,E9,E10,E11,E12,E13,E14,E15)
|
|
753
|
|
754 F1<-sum(Column1 %in% "F")
|
|
755 F2<-sum(Column2 %in% "F")
|
|
756 F3<-sum(Column3 %in% "F")
|
|
757 F4<-sum(Column4 %in% "F")
|
|
758 F5<-sum(Column5 %in% "F")
|
|
759 F6<-sum(Column6 %in% "F")
|
|
760 F7<-sum(Column7 %in% "F")
|
|
761 F8<-sum(Column8 %in% "F")
|
|
762 F9<-sum(Column9 %in% "F")
|
|
763 F10<-sum(Column10 %in% "F")
|
|
764 F11<-sum(Column11 %in% "F")
|
|
765 F12<-sum(Column12 %in% "F")
|
|
766 F13<-sum(Column13 %in% "F")
|
|
767 F14<-sum(Column14 %in% "F")
|
|
768 F15<-sum(Column15 %in% "F")
|
|
769 FllFs<-cbind(F1,F2,F3,F4,F5,F6,F7,F8,F9,F10,F11,F12,F13,F14,F15)
|
|
770
|
|
771 G1<-sum(Column1 %in% "G")
|
|
772 G2<-sum(Column2 %in% "G")
|
|
773 G3<-sum(Column3 %in% "G")
|
|
774 G4<-sum(Column4 %in% "G")
|
|
775 G5<-sum(Column5 %in% "G")
|
|
776 G6<-sum(Column6 %in% "G")
|
|
777 G7<-sum(Column7 %in% "G")
|
|
778 G8<-sum(Column8 %in% "G")
|
|
779 G9<-sum(Column9 %in% "G")
|
|
780 G10<-sum(Column10 %in% "G")
|
|
781 G11<-sum(Column11 %in% "G")
|
|
782 G12<-sum(Column12 %in% "G")
|
|
783 G13<-sum(Column13 %in% "G")
|
|
784 G14<-sum(Column14 %in% "G")
|
|
785 G15<-sum(Column15 %in% "G")
|
|
786 GllGs<-cbind(G1,G2,G3,G4,G5,G6,G7,G8,G9,G10,G11,G12,G13,G14,G15)
|
|
787
|
|
788 H1<-sum(Column1 %in% "H")
|
|
789 H2<-sum(Column2 %in% "H")
|
|
790 H3<-sum(Column3 %in% "H")
|
|
791 H4<-sum(Column4 %in% "H")
|
|
792 H5<-sum(Column5 %in% "H")
|
|
793 H6<-sum(Column6 %in% "H")
|
|
794 H7<-sum(Column7 %in% "H")
|
|
795 H8<-sum(Column8 %in% "H")
|
|
796 H9<-sum(Column9 %in% "H")
|
|
797 H10<-sum(Column10 %in% "H")
|
|
798 H11<-sum(Column11 %in% "H")
|
|
799 H12<-sum(Column12 %in% "H")
|
|
800 H13<-sum(Column13 %in% "H")
|
|
801 H14<-sum(Column14 %in% "H")
|
|
802 H15<-sum(Column15 %in% "H")
|
|
803 HllHs<-cbind(H1,H2,H3,H4,H5,H6,H7,H8,H9,H10,H11,H12,H13,H14,H15)
|
|
804
|
|
805 I1<-sum(Column1 %in% "I")
|
|
806 I2<-sum(Column2 %in% "I")
|
|
807 I3<-sum(Column3 %in% "I")
|
|
808 I4<-sum(Column4 %in% "I")
|
|
809 I5<-sum(Column5 %in% "I")
|
|
810 I6<-sum(Column6 %in% "I")
|
|
811 I7<-sum(Column7 %in% "I")
|
|
812 I8<-sum(Column8 %in% "I")
|
|
813 I9<-sum(Column9 %in% "I")
|
|
814 I10<-sum(Column10 %in% "I")
|
|
815 I11<-sum(Column11 %in% "I")
|
|
816 I12<-sum(Column12 %in% "I")
|
|
817 I13<-sum(Column13 %in% "I")
|
|
818 I14<-sum(Column14 %in% "I")
|
|
819 I15<-sum(Column15 %in% "I")
|
|
820 IllIs<-cbind(I1,I2,I3,I4,I5,I6,I7,I8,I9,I10,I11,I12,I13,I14,I15)
|
|
821
|
|
822 K1<-sum(Column1 %in% "K")
|
|
823 K2<-sum(Column2 %in% "K")
|
|
824 K3<-sum(Column3 %in% "K")
|
|
825 K4<-sum(Column4 %in% "K")
|
|
826 K5<-sum(Column5 %in% "K")
|
|
827 K6<-sum(Column6 %in% "K")
|
|
828 K7<-sum(Column7 %in% "K")
|
|
829 K8<-sum(Column8 %in% "K")
|
|
830 K9<-sum(Column9 %in% "K")
|
|
831 K10<-sum(Column10 %in% "K")
|
|
832 K11<-sum(Column11 %in% "K")
|
|
833 K12<-sum(Column12 %in% "K")
|
|
834 K13<-sum(Column13 %in% "K")
|
|
835 K14<-sum(Column14 %in% "K")
|
|
836 K15<-sum(Column15 %in% "K")
|
|
837 KllKs<-cbind(K1,K2,K3,K4,K5,K6,K7,K8,K9,K10,K11,K12,K13,K14,K15)
|
|
838
|
|
839 L1<-sum(Column1 %in% "L")
|
|
840 L2<-sum(Column2 %in% "L")
|
|
841 L3<-sum(Column3 %in% "L")
|
|
842 L4<-sum(Column4 %in% "L")
|
|
843 L5<-sum(Column5 %in% "L")
|
|
844 L6<-sum(Column6 %in% "L")
|
|
845 L7<-sum(Column7 %in% "L")
|
|
846 L8<-sum(Column8 %in% "L")
|
|
847 L9<-sum(Column9 %in% "L")
|
|
848 L10<-sum(Column10 %in% "L")
|
|
849 L11<-sum(Column11 %in% "L")
|
|
850 L12<-sum(Column12 %in% "L")
|
|
851 L13<-sum(Column13 %in% "L")
|
|
852 L14<-sum(Column14 %in% "L")
|
|
853 L15<-sum(Column15 %in% "L")
|
|
854 LllLs<-cbind(L1,L2,L3,L4,L5,L6,L7,L8,L9,L10,L11,L12,L13,L14,L15)
|
|
855
|
|
856 M1<-sum(Column1 %in% "M")
|
|
857 M2<-sum(Column2 %in% "M")
|
|
858 M3<-sum(Column3 %in% "M")
|
|
859 M4<-sum(Column4 %in% "M")
|
|
860 M5<-sum(Column5 %in% "M")
|
|
861 M6<-sum(Column6 %in% "M")
|
|
862 M7<-sum(Column7 %in% "M")
|
|
863 M8<-sum(Column8 %in% "M")
|
|
864 M9<-sum(Column9 %in% "M")
|
|
865 M10<-sum(Column10 %in% "M")
|
|
866 M11<-sum(Column11 %in% "M")
|
|
867 M12<-sum(Column12 %in% "M")
|
|
868 M13<-sum(Column13 %in% "M")
|
|
869 M14<-sum(Column14 %in% "M")
|
|
870 M15<-sum(Column15 %in% "M")
|
|
871 MllMs<-cbind(M1,M2,M3,M4,M5,M6,M7,M8,M9,M10,M11,M12,M13,M14,M15)
|
|
872
|
|
873 N1<-sum(Column1 %in% "N")
|
|
874 N2<-sum(Column2 %in% "N")
|
|
875 N3<-sum(Column3 %in% "N")
|
|
876 N4<-sum(Column4 %in% "N")
|
|
877 N5<-sum(Column5 %in% "N")
|
|
878 N6<-sum(Column6 %in% "N")
|
|
879 N7<-sum(Column7 %in% "N")
|
|
880 N8<-sum(Column8 %in% "N")
|
|
881 N9<-sum(Column9 %in% "N")
|
|
882 N10<-sum(Column10 %in% "N")
|
|
883 N11<-sum(Column11 %in% "N")
|
|
884 N12<-sum(Column12 %in% "N")
|
|
885 N13<-sum(Column13 %in% "N")
|
|
886 N14<-sum(Column14 %in% "N")
|
|
887 N15<-sum(Column15 %in% "N")
|
|
888 NllNs<-cbind(N1,N2,N3,N4,N5,N6,N7,N8,N9,N10,N11,N12,N13,N14,N15)
|
|
889
|
|
890 P1<-sum(Column1 %in% "P")
|
|
891 P2<-sum(Column2 %in% "P")
|
|
892 P3<-sum(Column3 %in% "P")
|
|
893 P4<-sum(Column4 %in% "P")
|
|
894 P5<-sum(Column5 %in% "P")
|
|
895 P6<-sum(Column6 %in% "P")
|
|
896 P7<-sum(Column7 %in% "P")
|
|
897 P8<-sum(Column8 %in% "P")
|
|
898 P9<-sum(Column9 %in% "P")
|
|
899 P10<-sum(Column10 %in% "P")
|
|
900 P11<-sum(Column11 %in% "P")
|
|
901 P12<-sum(Column12 %in% "P")
|
|
902 P13<-sum(Column13 %in% "P")
|
|
903 P14<-sum(Column14 %in% "P")
|
|
904 P15<-sum(Column15 %in% "P")
|
|
905 PllPs<-cbind(P1,P2,P3,P4,P5,P6,P7,P8,P9,P10,P11,P12,P13,P14,P15)
|
|
906
|
|
907 Q1<-sum(Column1 %in% "Q")
|
|
908 Q2<-sum(Column2 %in% "Q")
|
|
909 Q3<-sum(Column3 %in% "Q")
|
|
910 Q4<-sum(Column4 %in% "Q")
|
|
911 Q5<-sum(Column5 %in% "Q")
|
|
912 Q6<-sum(Column6 %in% "Q")
|
|
913 Q7<-sum(Column7 %in% "Q")
|
|
914 Q8<-sum(Column8 %in% "Q")
|
|
915 Q9<-sum(Column9 %in% "Q")
|
|
916 Q10<-sum(Column10 %in% "Q")
|
|
917 Q11<-sum(Column11 %in% "Q")
|
|
918 Q12<-sum(Column12 %in% "Q")
|
|
919 Q13<-sum(Column13 %in% "Q")
|
|
920 Q14<-sum(Column14 %in% "Q")
|
|
921 Q15<-sum(Column15 %in% "Q")
|
|
922 QllQs<-cbind(Q1,Q2,Q3,Q4,Q5,Q6,Q7,Q8,Q9,Q10,Q11,Q12,Q13,Q14,Q15)
|
|
923
|
|
924 R1<-sum(Column1 %in% "R")
|
|
925 R2<-sum(Column2 %in% "R")
|
|
926 R3<-sum(Column3 %in% "R")
|
|
927 R4<-sum(Column4 %in% "R")
|
|
928 R5<-sum(Column5 %in% "R")
|
|
929 R6<-sum(Column6 %in% "R")
|
|
930 R7<-sum(Column7 %in% "R")
|
|
931 R8<-sum(Column8 %in% "R")
|
|
932 R9<-sum(Column9 %in% "R")
|
|
933 R10<-sum(Column10 %in% "R")
|
|
934 R11<-sum(Column11 %in% "R")
|
|
935 R12<-sum(Column12 %in% "R")
|
|
936 R13<-sum(Column13 %in% "R")
|
|
937 R14<-sum(Column14 %in% "R")
|
|
938 R15<-sum(Column15 %in% "R")
|
|
939 RllRs<-cbind(R1,R2,R3,R4,R5,R6,R7,R8,R9,R10,R11,R12,R13,R14,R15)
|
|
940
|
|
941 S1<-sum(Column1 %in% "S")
|
|
942 S2<-sum(Column2 %in% "S")
|
|
943 S3<-sum(Column3 %in% "S")
|
|
944 S4<-sum(Column4 %in% "S")
|
|
945 S5<-sum(Column5 %in% "S")
|
|
946 S6<-sum(Column6 %in% "S")
|
|
947 S7<-sum(Column7 %in% "S")
|
|
948 S8<-sum(Column8 %in% "S")
|
|
949 S9<-sum(Column9 %in% "S")
|
|
950 S10<-sum(Column10 %in% "S")
|
|
951 S11<-sum(Column11 %in% "S")
|
|
952 S12<-sum(Column12 %in% "S")
|
|
953 S13<-sum(Column13 %in% "S")
|
|
954 S14<-sum(Column14 %in% "S")
|
|
955 S15<-sum(Column15 %in% "S")
|
|
956 SllSs<-cbind(S1,S2,S3,S4,S5,S6,S7,S8,S9,S10,S11,S12,S13,S14,S15)
|
|
957
|
|
958 T1<-sum(Column1 %in% "T")
|
|
959 T2<-sum(Column2 %in% "T")
|
|
960 T3<-sum(Column3 %in% "T")
|
|
961 T4<-sum(Column4 %in% "T")
|
|
962 T5<-sum(Column5 %in% "T")
|
|
963 T6<-sum(Column6 %in% "T")
|
|
964 T7<-sum(Column7 %in% "T")
|
|
965 T8<-sum(Column8 %in% "T")
|
|
966 T9<-sum(Column9 %in% "T")
|
|
967 T10<-sum(Column10 %in% "T")
|
|
968 T11<-sum(Column11 %in% "T")
|
|
969 T12<-sum(Column12 %in% "T")
|
|
970 T13<-sum(Column13 %in% "T")
|
|
971 T14<-sum(Column14 %in% "T")
|
|
972 T15<-sum(Column15 %in% "T")
|
|
973 TllTs<-cbind(T1,T2,T3,T4,T5,T6,T7,T8,T9,T10,T11,T12,T13,T14,T15)
|
|
974
|
|
975 V1<-sum(Column1 %in% "V")
|
|
976 V2<-sum(Column2 %in% "V")
|
|
977 V3<-sum(Column3 %in% "V")
|
|
978 V4<-sum(Column4 %in% "V")
|
|
979 V5<-sum(Column5 %in% "V")
|
|
980 V6<-sum(Column6 %in% "V")
|
|
981 V7<-sum(Column7 %in% "V")
|
|
982 V8<-sum(Column8 %in% "V")
|
|
983 V9<-sum(Column9 %in% "V")
|
|
984 V10<-sum(Column10 %in% "V")
|
|
985 V11<-sum(Column11 %in% "V")
|
|
986 V12<-sum(Column12 %in% "V")
|
|
987 V13<-sum(Column13 %in% "V")
|
|
988 V14<-sum(Column14 %in% "V")
|
|
989 V15<-sum(Column15 %in% "V")
|
|
990 VllVs<-cbind(V1,V2,V3,V4,V5,V6,V7,V8,V9,V10,V11,V12,V13,V14,V15)
|
|
991
|
|
992 W1<-sum(Column1 %in% "W")
|
|
993 W2<-sum(Column2 %in% "W")
|
|
994 W3<-sum(Column3 %in% "W")
|
|
995 W4<-sum(Column4 %in% "W")
|
|
996 W5<-sum(Column5 %in% "W")
|
|
997 W6<-sum(Column6 %in% "W")
|
|
998 W7<-sum(Column7 %in% "W")
|
|
999 W8<-sum(Column8 %in% "W")
|
|
1000 W9<-sum(Column9 %in% "W")
|
|
1001 W10<-sum(Column10 %in% "W")
|
|
1002 W11<-sum(Column11 %in% "W")
|
|
1003 W12<-sum(Column12 %in% "W")
|
|
1004 W13<-sum(Column13 %in% "W")
|
|
1005 W14<-sum(Column14 %in% "W")
|
|
1006 W15<-sum(Column15 %in% "W")
|
|
1007 WllWs<-cbind(W1,W2,W3,W4,W5,W6,W7,W8,W9,W10,W11,W12,W13,W14,W15)
|
|
1008
|
|
1009 Y1<-sum(Column1 %in% "Y")
|
|
1010 Y2<-sum(Column2 %in% "Y")
|
|
1011 Y3<-sum(Column3 %in% "Y")
|
|
1012 Y4<-sum(Column4 %in% "Y")
|
|
1013 Y5<-sum(Column5 %in% "Y")
|
|
1014 Y6<-sum(Column6 %in% "Y")
|
|
1015 Y7<-sum(Column7 %in% "Y")
|
|
1016 Y8<-sum(Column8 %in% "Y")
|
|
1017 Y9<-sum(Column9 %in% "Y")
|
|
1018 Y10<-sum(Column10 %in% "Y")
|
|
1019 Y11<-sum(Column11 %in% "Y")
|
|
1020 Y12<-sum(Column12 %in% "Y")
|
|
1021 Y13<-sum(Column13 %in% "Y")
|
|
1022 Y14<-sum(Column14 %in% "Y")
|
|
1023 Y15<-sum(Column15 %in% "Y")
|
|
1024 YllYs<-cbind(Y1,Y2,Y3,Y4,Y5,Y6,Y7,Y8,Y9,Y10,Y11,Y12,Y13,Y14,Y15)
|
|
1025 PositionTable<-rbind(AllAs,CllCs,DllDs,EllEs,FllFs,GllGs,HllHs,IllIs,KllKs,LllLs,MllMs,NllNs,PllPs,QllQs,RllRs,SllSs,TllTs,VllVs,WllWs,YllYs)
|
|
1026 }
|
|
1027 #endogenous prob matrix is AA position over subbackfreqmean
|
|
1028 dim(PositionTable)
|
|
1029 EPMtable<-PositionTable
|
|
1030 # EPMtable[1,]<-(PositionTable[1,]/(PositionTable[1,]*.01*Amean))
|
|
1031 # EPMtable[2,]<-(PositionTable[2,]/(PositionTable[2,]*.01*Cmean))
|
|
1032 # EPMtable[3,]<-(PositionTable[3,]/(PositionTable[3,]*.01*Dmean))
|
|
1033 # EPMtable[4,]<-(PositionTable[4,]/(PositionTable[4,]*.01*Emean))
|
|
1034 # EPMtable[5,]<-(PositionTable[5,]/(PositionTable[5,]*.01*Fmean))
|
|
1035 # EPMtable[6,]<-(PositionTable[6,]/(PositionTable[6,]*.01*Gmean))
|
|
1036 # EPMtable[7,]<-(PositionTable[7,]/(PositionTable[7,]*.01*Hmean))
|
|
1037 # EPMtable[8,]<-(PositionTable[8,]/(PositionTable[8,]*.01*Imean))
|
|
1038 # EPMtable[9,]<-(PositionTable[9,]/(PositionTable[9,]*.01*Kmean))
|
|
1039 # EPMtable[10,]<-(PositionTable[10,]/(PositionTable[10,]*.01*Lmean))
|
|
1040 # EPMtable[11,]<-(PositionTable[11,]/(PositionTable[11,]*.01*Mmean))
|
|
1041 # EPMtable[12,]<-(PositionTable[12,]/(PositionTable[12,]*.01*Nmean))
|
|
1042 # EPMtable[13,]<-(PositionTable[13,]/(PositionTable[13,]*.01*Pmean))
|
|
1043 # EPMtable[14,]<-(PositionTable[14,]/(PositionTable[14,]*.01*Qmean))
|
|
1044 # EPMtable[15,]<-(PositionTable[15,]/(PositionTable[15,]*.01*Rmean))
|
|
1045 # EPMtable[16,]<-(PositionTable[16,]/(PositionTable[16,]*.01*Smean))
|
|
1046 # EPMtable[17,]<-(PositionTable[17,]/(PositionTable[17,]*.01*Tmean))
|
|
1047 # EPMtable[18,]<-(PositionTable[18,]/(PositionTable[18,]*.01*Vmean))
|
|
1048 # EPMtable[19,]<-(PositionTable[19,]/(PositionTable[19,]*.01*Wmean))
|
|
1049 # EPMtable[20,]<-(PositionTable[20,]/(PositionTable[20,]*.01*Ymean))
|
|
1050
|
|
1051 columns<-c(length(Column1)-sum(Column1==""),
|
|
1052 length(Column2)-sum(Column2==""),
|
|
1053 length(Column3)-sum(Column3==""),
|
|
1054 length(Column4)-sum(Column4==""),
|
|
1055 length(Column5)-sum(Column5==""),
|
|
1056 length(Column6)-sum(Column6==""),
|
|
1057 length(Column7)-sum(Column7==""),
|
|
1058 length(Column8)-sum(Column8==""),
|
|
1059 length(Column9)-sum(Column9==""),
|
|
1060 length(Column10)-sum(Column10==""),
|
|
1061 length(Column11)-sum(Column11==""),
|
|
1062 length(Column12)-sum(Column12==""),
|
|
1063 length(Column13)-sum(Column13==""),
|
|
1064 length(Column14)-sum(Column14==""),
|
|
1065 length(Column15)-sum(Column15==""))
|
|
1066
|
|
1067 for (z in 1:15) {
|
|
1068 for (y in 1:20) {
|
|
1069 if (PositionTable[y,z]>0){
|
|
1070 EPMtable[y,z]<-PositionTable[y,z]/((columns[z]*.01*AllMeans[y]))
|
|
1071 }
|
|
1072 if (PositionTable[y,z]==0){
|
|
1073 EPMtable[y,z]<-(1/columns[z])/((columns[z]*.01*AllMeans[y]))
|
|
1074 }
|
|
1075 }
|
|
1076 }
|
|
1077 #here I created the endogenous probability matrix
|
|
1078 #now all I need to do is make the program automatically determine which SDs are >2, and then make it perform screener and sorter on those SDs
|
|
1079
|
|
1080
|
|
1081
|
|
1082
|
|
1083
|
|
1084 # write.xlsx(SDtable,file=FILENAME, sheetName = "Standard Deviation Table",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1085 # write.xlsx(PercentTable,file = FILENAME,sheetName = "Percent Table",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1086 # write.xlsx(SelectivitySheet,file = FILENAME,sheetName = "Site Selectivity",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1087 # write.xlsx(EPMtable,file=FILENAME,sheetName = "Endogenous Probability Matrix",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1088 # write.xlsx(NormalizationScore,file = FILENAME,sheetName = "Normalization Score",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1089
|
|
1090 NormalizationScore<-c("Normalization Score",NormalizationScore)
|
|
1091
|
|
1092 write.table(x=c("SD Table"),file=FILENAME,append = TRUE,sep=",", row.names = FALSE, col.names = FALSE)
|
|
1093 write.table(SDtable,file=FILENAME,append = TRUE,sep=",", row.names = FALSE, col.names = FALSE)
|
|
1094 write.table(x=c("Percent Table"),file=FILENAME,append = TRUE,sep=",", row.names = FALSE, col.names = FALSE)
|
|
1095 write.table(PercentTable,file=FILENAME, append = TRUE,sep=",",row.names = FALSE, col.names = FALSE)
|
|
1096
|
|
1097 EPMtableu<-EPMtable
|
|
1098 HeaderSD<-c(-7:7)
|
|
1099 EPMtableu<-rbind(HeaderSD,EPMtableu)
|
|
1100 row.names(EPMtableu)<-NULL
|
|
1101 EPMtableu<-data.frame(SetOfAAs,EPMtableu)
|
|
1102
|
|
1103 write.table("Site Selectivity Matrix", file = FILENAME2, append = TRUE, sep = ",", row.names = FALSE, col.names = FALSE)
|
|
1104 SelectivityHeader=matrix(data = c("Position",-7,-6,-5,-4,-3,-2,-1,0,1,2,3,4,5,6,7),nrow = 1)
|
|
1105 head<-matrix(data=rep(" ",times=16),nrow = 1)
|
|
1106 SelectivityHeader<-rbind(head,SelectivityHeader)
|
|
1107
|
|
1108 write.table(SelectivityHeader, file = FILENAME2, append = TRUE, sep = ",", row.names = FALSE, col.names = FALSE)
|
|
1109 #colnames(SelectivitySheet)<-c("-7","-6","-5","-4","-3","-2","-1","0","1","2","3","4","5","6","7")
|
|
1110 write.table(SelectivitySheet,file = FILENAME2, append = TRUE,sep = ",",row.names = TRUE, col.names = FALSE)
|
|
1111 write.table(x=c("Endogenous Probability Matrix"),file=FILENAME2,append = TRUE,sep=",", row.names = FALSE, col.names = FALSE)
|
|
1112 write.table(EPMtableu,file = FILENAME2, append = TRUE,sep = ",",row.names = FALSE, col.names = FALSE)
|
|
1113 write.table(NormalizationScore, file = FILENAME2, append = TRUE,sep = ",",row.names = FALSE, col.names = FALSE)
|
|
1114
|
|
1115
|
|
1116
|
|
1117
|
|
1118
|
|
1119
|
|
1120
|
|
1121
|
|
1122
|
|
1123
|
|
1124
|
|
1125
|
|
1126
|
|
1127
|
|
1128
|
|
1129
|
|
1130
|
|
1131
|
|
1132
|
|
1133
|
|
1134
|
|
1135
|
|
1136
|
|
1137
|
|
1138
|
|
1139
|
|
1140
|
|
1141
|
|
1142
|
|
1143
|
|
1144
|
|
1145
|
|
1146
|
|
1147
|
|
1148 #test myself: this script should take in amino acids for each of the 9 positions and give out every single combination of those AAs
|
|
1149
|
|
1150 #need to do following: fix it so that the accession numbers stay with the substrates,
|
|
1151 #also the neg false constant is totaly unphos'd Ys found by FASTA-2-CSV system# uniprot
|
|
1152
|
|
1153 #HOW MANY: IF THERE'S two aas in each position you get 2^9, so I assume the numbers are:
|
|
1154 #(number in position-4)*(number in position -3)*(number in position -2)...=total
|
|
1155 # require(rJava)
|
|
1156 # require(xlsxjars)
|
|
1157 # require(xlsx)
|
|
1158 # # require(readxl)
|
|
1159
|
|
1160 #View(SDtable)
|
|
1161 bareSDs<-SDtable[2:21,2:16]
|
|
1162 goodones<-bareSDs>2
|
|
1163
|
|
1164 Positionm7<-which(goodones[,1] %in% TRUE)
|
|
1165 if (length(Positionm7)<1){Positionm7<-which(bareSDs[,1]==max(bareSDs[,1]))}
|
|
1166 Positionm6<-which(goodones[,2] %in% TRUE)
|
|
1167 if (length(Positionm6)<1){Positionm6<-which(bareSDs[,2]==max(bareSDs[,2]))}
|
|
1168 Positionm5<-which(goodones[,3] %in% TRUE)
|
|
1169 if (length(Positionm5)<1){Positionm5<-which(bareSDs[,3]==max(bareSDs[,3]))}
|
|
1170 Positionm4<-which(goodones[,4] %in% TRUE)
|
|
1171 if (length(Positionm4)<1){Positionm4<-which(bareSDs[,4]==max(bareSDs[,4]))}
|
|
1172 Positionm3<-which(goodones[,5] %in% TRUE)
|
|
1173 if (length(Positionm3)<1){Positionm3<-which(bareSDs[,5]==max(bareSDs[,5]))}
|
|
1174 Positionm2<-which(goodones[,6] %in% TRUE)
|
|
1175 if (length(Positionm2)<1){Positionm2<-which(bareSDs[,6]==max(bareSDs[,6]))}
|
|
1176 Positionm1<-which(goodones[,7] %in% TRUE)
|
|
1177 if (length(Positionm1)<1){Positionm1<-which(bareSDs[,7]==max(bareSDs[,7]))}
|
|
1178
|
|
1179 Positiond0<-which(goodones[,8] %in% TRUE)
|
|
1180 if (length(Positiond0)<1){Positiond0<-which(bareSDs[,8]==max(bareSDs[,8]))}
|
|
1181
|
|
1182 Positionp1<-which(goodones[,9] %in% TRUE)
|
|
1183 if (length(Positionp1)<1){Positionp1<-which(bareSDs[,9]==max(bareSDs[,9]))}
|
|
1184 Positionp2<-which(goodones[,10] %in% TRUE)
|
|
1185 if (length(Positionp2)<1){Positionp2<-which(bareSDs[,10]==max(bareSDs[,10]))}
|
|
1186 Positionp3<-which(goodones[,11] %in% TRUE)
|
|
1187 if (length(Positionp3)<1){Positionp3<-which(bareSDs[,11]==max(bareSDs[,11]))}
|
|
1188 Positionp4<-which(goodones[,12] %in% TRUE)
|
|
1189 if (length(Positionp4)<1){Positionp4<-which(bareSDs[,12]==max(bareSDs[,12]))}
|
|
1190 Positionp5<-which(goodones[,13] %in% TRUE)
|
|
1191 if (length(Positionp5)<1){Positionp5<-which(bareSDs[,13]==max(bareSDs[,13]))}
|
|
1192 Positionp6<-which(goodones[,14] %in% TRUE)
|
|
1193 if (length(Positionp6)<1){Positionp6<-which(bareSDs[,14]==max(bareSDs[,14]))}
|
|
1194 Positionp7<-which(goodones[,15] %in% TRUE)
|
|
1195 if (length(Positionp7)<1){Positionp7<-which(bareSDs[,15]==max(bareSDs[,15]))}
|
|
1196
|
|
1197 aa_props2 <- c("1"="A", "2"="C", "3"="D", "4"="E", "5"="F", "6"="G", "7"="H", "8"="I", "9"="K", "10"="L", "11"="M", "12"="N",
|
|
1198 "13"="P", "14"="Q", "15"="R", "16"="S", "17"="T", "18"="V", "19"="W", "20"="Y")
|
|
1199
|
|
1200 Positionm7<-sapply(Positionm7, function (x) aa_props2[x])
|
|
1201 Positionm6<-sapply(Positionm6, function (x) aa_props2[x])
|
|
1202 Positionm5<-sapply(Positionm5, function (x) aa_props2[x])
|
|
1203 Positionm4<-sapply(Positionm4, function (x) aa_props2[x])
|
|
1204 Positionm3<-sapply(Positionm3, function (x) aa_props2[x])
|
|
1205 Positionm2<-sapply(Positionm2, function (x) aa_props2[x])
|
|
1206 Positionm1<-sapply(Positionm1, function (x) aa_props2[x])
|
|
1207 Positiond0<-sapply(Positiond0, function (x) aa_props2[x])
|
|
1208 Positionp1<-sapply(Positionp1, function (x) aa_props2[x])
|
|
1209 Positionp2<-sapply(Positionp2, function (x) aa_props2[x])
|
|
1210 Positionp3<-sapply(Positionp3, function (x) aa_props2[x])
|
|
1211 Positionp4<-sapply(Positionp4, function (x) aa_props2[x])
|
|
1212 Positionp5<-sapply(Positionp5, function (x) aa_props2[x])
|
|
1213 Positionp6<-sapply(Positionp6, function (x) aa_props2[x])
|
|
1214 Positionp7<-sapply(Positionp7, function (x) aa_props2[x])
|
|
1215
|
|
1216
|
|
1217 # Positionm7<-c("D","H","N","V")
|
|
1218 # Positionm6<-c("E","V")
|
|
1219 # Positionm5<-c("D","H")
|
|
1220 # Positionm4<-c("D","N")
|
|
1221 # Positionm3<-c("D","E","F","Q")
|
|
1222 # Positionm2<-c("D","N","Q","S")
|
|
1223 # Positionm1<-c("F","I","L")
|
|
1224 # Positiond0<-c("Y")
|
|
1225 # Positionp1<-c("A","E")
|
|
1226 # Positionp2<-c("T","S","Q","E")
|
|
1227 # Positionp3<-c("V")
|
|
1228 # Positionp4<-c("K")
|
|
1229 # Positionp5<-c("K")
|
|
1230 # Positionp6<-c("K")
|
|
1231 # Positionp7<-c("R")
|
|
1232 #this is where the amino acids for each position are given. m means minus, p mean plus
|
|
1233 ########################################
|
|
1234 # ScreenerFilename<-"C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls"
|
|
1235
|
|
1236
|
|
1237
|
|
1238
|
|
1239
|
|
1240
|
|
1241
|
|
1242
|
|
1243
|
|
1244
|
|
1245
|
|
1246 screaner<-read.csv(ScreenerFilename, header = FALSE, stringsAsFactors = FALSE)
|
|
1247
|
|
1248
|
|
1249 Abl<-screaner[2:25,]
|
|
1250 Arg<-screaner[27:50,]
|
|
1251 Btk<-screaner[52:75,]
|
|
1252 Csk<-screaner[77:100,]
|
|
1253 Fyn<-screaner[102:125,]
|
|
1254 Hck<-screaner[127:150,]
|
|
1255 JAK2<-screaner[152:175,]
|
|
1256 Lck<-screaner[177:200,]
|
|
1257 Lyn<-screaner[202:225,]
|
|
1258 Pyk2<-screaner[227:250,]
|
|
1259 Src<-screaner[252:275,]
|
|
1260 Syk<-screaner[277:300,]
|
|
1261 Yes<-screaner[302:325,]
|
|
1262
|
|
1263 #two questions: why are we doing BTK when we already have a bioninformatics page about it?
|
|
1264 #two I reran everything and only get 96 positions of interest in the SD table
|
|
1265
|
|
1266
|
|
1267
|
|
1268
|
|
1269
|
|
1270
|
|
1271
|
|
1272
|
|
1273
|
|
1274 #Do_You_want_An_Excel_Output_Questionmark<-"NO"
|
|
1275 GeneratedPeptidesFile<-"GeneratedPeptidesFile.csv"
|
|
1276
|
|
1277
|
|
1278 # Abl<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 4)
|
|
1279 # Arg<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 5)
|
|
1280 # Btk<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 6)
|
|
1281 # Csk<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 7)
|
|
1282 # Fyn<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 8)
|
|
1283 # Hck<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 9)
|
|
1284 # JAK2<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 10)
|
|
1285 # Lck<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 11)
|
|
1286 # Lyn<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 12)
|
|
1287 # Pyk2<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 13)
|
|
1288 # Src<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 14)
|
|
1289 # Syk<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 15)
|
|
1290 # Yes<-read.xlsx("C:/Users/User Name/Desktop/UMN 2017 Spring/Parker Lab/Kinatest ID/Screener.xls", sheetIndex = 16)
|
|
1291 #
|
|
1292
|
|
1293
|
|
1294 "A"=1
|
|
1295 "C"=2
|
|
1296 "D"=3
|
|
1297 "E"=4
|
|
1298 "F"=5
|
|
1299 "G"=6
|
|
1300 "H"=7
|
|
1301 "I"=8
|
|
1302 "K"=9
|
|
1303 "L"=10
|
|
1304 "M"=11
|
|
1305 "N"=12
|
|
1306 "P"=13
|
|
1307 "Q"=14
|
|
1308 "R"=15
|
|
1309 "S"=16
|
|
1310 "T"=17
|
|
1311 "V"=18
|
|
1312 "W"=19
|
|
1313 "Y"=20
|
|
1314
|
|
1315 aa_props <- c("A"=A, "C"=C, "D"=D, "E"=E, "F"=F,"G"=G,"H"=H,"I"=I,"K"=K,"L"=L,"M"=M,"N"=N,"P"=P,"Q"=Q,"R"=R,
|
|
1316 "S"=S,"T"=T,"V"=V,"W"=W,"Y"=Y,"xY"=Y,"O"=21)
|
|
1317
|
|
1318 number15<-sapply(Positionm7, function (x) aa_props[x])
|
|
1319 number14<-sapply(Positionm6, function (x) aa_props[x])
|
|
1320 number13<-sapply(Positionm5, function (x) aa_props[x])
|
|
1321 number1 <- sapply(Positionm4, function (x) aa_props[x])
|
|
1322 number2 <- sapply(Positionm3, function (x) aa_props[x])
|
|
1323 number3 <- sapply(Positionm2, function (x) aa_props[x])
|
|
1324 number4 <- sapply(Positionm1, function (x) aa_props[x])
|
|
1325 number5 <- sapply(Positiond0, function (x) aa_props[x])
|
|
1326 number6 <- sapply(Positionp1, function (x) aa_props[x])
|
|
1327 number7 <- sapply(Positionp2, function (x) aa_props[x])
|
|
1328 number8 <- sapply(Positionp3, function (x) aa_props[x])
|
|
1329 number9 <- sapply(Positionp4, function (x) aa_props[x])
|
|
1330 number10<-sapply(Positionp5, function (x) aa_props[x])
|
|
1331 number11<-sapply(Positionp6, function (x) aa_props[x])
|
|
1332 number12<-sapply(Positionp7, function (x) aa_props[x])
|
|
1333
|
|
1334 # number1<-Positionm4
|
|
1335 # number2<-Positionm3
|
|
1336 # number3<-Positionm2
|
|
1337 # number4<-Positionm1
|
|
1338 # number5<-Positiond0
|
|
1339 # number6<-Positionp1
|
|
1340 # number7<-Positionp2
|
|
1341 # number8<-Positionp3
|
|
1342 # number9<-Positionp4
|
|
1343
|
|
1344 #############################
|
|
1345 #here I create the Abl seqs with proper value for each number
|
|
1346 if (1==0){
|
|
1347 Ablnumber1<- gsub("A",A,Ablnumber1,perl = TRUE)
|
|
1348 Ablnumber1<- gsub("C",C,Ablnumber1,perl = TRUE)
|
|
1349 Ablnumber1<- gsub("D",D,Ablnumber1,perl = TRUE)
|
|
1350 Ablnumber1<- gsub("E",E,Ablnumber1,perl = TRUE)
|
|
1351 Ablnumber1<- gsub("F",F,Ablnumber1,perl = TRUE)
|
|
1352 Ablnumber1<- gsub("G",G,Ablnumber1,perl = TRUE)
|
|
1353 Ablnumber1<- gsub("H",H,Ablnumber1,perl = TRUE)
|
|
1354 Ablnumber1<- gsub("I",I,Ablnumber1,perl = TRUE)
|
|
1355 Ablnumber1<- gsub("K",K,Ablnumber1,perl = TRUE)
|
|
1356 Ablnumber1<- gsub("L",L,Ablnumber1,perl = TRUE)
|
|
1357 Ablnumber1<- gsub("M",M,Ablnumber1,perl = TRUE)
|
|
1358 Ablnumber1<- gsub("N",N,Ablnumber1,perl = TRUE)
|
|
1359 Ablnumber1<- gsub("P",P,Ablnumber1,perl = TRUE)
|
|
1360 Ablnumber1<- gsub("Q",Q,Ablnumber1,perl = TRUE)
|
|
1361 Ablnumber1<- gsub("R",R,Ablnumber1,perl = TRUE)
|
|
1362 Ablnumber1<- gsub("S",S,Ablnumber1,perl = TRUE)
|
|
1363 Ablnumber1<- gsub("T",T,Ablnumber1,perl = TRUE)
|
|
1364 Ablnumber1<- gsub("V",V,Ablnumber1,perl = TRUE)
|
|
1365 Ablnumber1<- gsub("W",W,Ablnumber1,perl = TRUE)
|
|
1366 Ablnumber1<- gsub("Y",Y,Ablnumber1,perl = TRUE)
|
|
1367
|
|
1368 Ablnumber2<- gsub("A",A,Ablnumber2,perl = TRUE)
|
|
1369 Ablnumber2<- gsub("C",C,Ablnumber2,perl = TRUE)
|
|
1370 Ablnumber2<- gsub("D",D,Ablnumber2,perl = TRUE)
|
|
1371 Ablnumber2<- gsub("E",E,Ablnumber2,perl = TRUE)
|
|
1372 Ablnumber2<- gsub("F",F,Ablnumber2,perl = TRUE)
|
|
1373 Ablnumber2<- gsub("G",G,Ablnumber2,perl = TRUE)
|
|
1374 Ablnumber2<- gsub("H",H,Ablnumber2,perl = TRUE)
|
|
1375 Ablnumber2<- gsub("I",I,Ablnumber2,perl = TRUE)
|
|
1376 Ablnumber2<- gsub("K",K,Ablnumber2,perl = TRUE)
|
|
1377 Ablnumber2<- gsub("L",L,Ablnumber2,perl = TRUE)
|
|
1378 Ablnumber2<- gsub("M",M,Ablnumber2,perl = TRUE)
|
|
1379 Ablnumber2<- gsub("N",N,Ablnumber2,perl = TRUE)
|
|
1380 Ablnumber2<- gsub("P",P,Ablnumber2,perl = TRUE)
|
|
1381 Ablnumber2<- gsub("Q",Q,Ablnumber2,perl = TRUE)
|
|
1382 Ablnumber2<- gsub("R",R,Ablnumber2,perl = TRUE)
|
|
1383 Ablnumber2<- gsub("S",S,Ablnumber2,perl = TRUE)
|
|
1384 Ablnumber2<- gsub("T",T,Ablnumber2,perl = TRUE)
|
|
1385 Ablnumber2<- gsub("V",V,Ablnumber2,perl = TRUE)
|
|
1386 Ablnumber2<- gsub("W",W,Ablnumber2,perl = TRUE)
|
|
1387 Ablnumber2<- gsub("Y",Y,Ablnumber2,perl = TRUE)
|
|
1388
|
|
1389 Ablnumber3<- gsub("A",A,Ablnumber3,perl = TRUE)
|
|
1390 Ablnumber3<- gsub("C",C,Ablnumber3,perl = TRUE)
|
|
1391 Ablnumber3<- gsub("D",D,Ablnumber3,perl = TRUE)
|
|
1392 Ablnumber3<- gsub("E",E,Ablnumber3,perl = TRUE)
|
|
1393 Ablnumber3<- gsub("F",F,Ablnumber3,perl = TRUE)
|
|
1394 Ablnumber3<- gsub("G",G,Ablnumber3,perl = TRUE)
|
|
1395 Ablnumber3<- gsub("H",H,Ablnumber3,perl = TRUE)
|
|
1396 Ablnumber3<- gsub("I",I,Ablnumber3,perl = TRUE)
|
|
1397 Ablnumber3<- gsub("K",K,Ablnumber3,perl = TRUE)
|
|
1398 Ablnumber3<- gsub("L",L,Ablnumber3,perl = TRUE)
|
|
1399 Ablnumber3<- gsub("M",M,Ablnumber3,perl = TRUE)
|
|
1400 Ablnumber3<- gsub("N",N,Ablnumber3,perl = TRUE)
|
|
1401 Ablnumber3<- gsub("P",P,Ablnumber3,perl = TRUE)
|
|
1402 Ablnumber3<- gsub("Q",Q,Ablnumber3,perl = TRUE)
|
|
1403 Ablnumber3<- gsub("R",R,Ablnumber3,perl = TRUE)
|
|
1404 Ablnumber3<- gsub("S",S,Ablnumber3,perl = TRUE)
|
|
1405 Ablnumber3<- gsub("T",T,Ablnumber3,perl = TRUE)
|
|
1406 Ablnumber3<- gsub("V",V,Ablnumber3,perl = TRUE)
|
|
1407 Ablnumber3<- gsub("W",W,Ablnumber3,perl = TRUE)
|
|
1408 Ablnumber3<- gsub("Y",Y,Ablnumber3,perl = TRUE)
|
|
1409
|
|
1410 Ablnumber4<- gsub("A",A,Ablnumber4,perl = TRUE)
|
|
1411 Ablnumber4<- gsub("C",C,Ablnumber4,perl = TRUE)
|
|
1412 Ablnumber4<- gsub("D",D,Ablnumber4,perl = TRUE)
|
|
1413 Ablnumber4<- gsub("E",E,Ablnumber4,perl = TRUE)
|
|
1414 Ablnumber4<- gsub("F",F,Ablnumber4,perl = TRUE)
|
|
1415 Ablnumber4<- gsub("G",G,Ablnumber4,perl = TRUE)
|
|
1416 Ablnumber4<- gsub("H",H,Ablnumber4,perl = TRUE)
|
|
1417 Ablnumber4<- gsub("I",I,Ablnumber4,perl = TRUE)
|
|
1418 Ablnumber4<- gsub("K",K,Ablnumber4,perl = TRUE)
|
|
1419 Ablnumber4<- gsub("L",L,Ablnumber4,perl = TRUE)
|
|
1420 Ablnumber4<- gsub("M",M,Ablnumber4,perl = TRUE)
|
|
1421 Ablnumber4<- gsub("N",N,Ablnumber4,perl = TRUE)
|
|
1422 Ablnumber4<- gsub("P",P,Ablnumber4,perl = TRUE)
|
|
1423 Ablnumber4<- gsub("Q",Q,Ablnumber4,perl = TRUE)
|
|
1424 Ablnumber4<- gsub("R",R,Ablnumber4,perl = TRUE)
|
|
1425 Ablnumber4<- gsub("S",S,Ablnumber4,perl = TRUE)
|
|
1426 Ablnumber4<- gsub("T",T,Ablnumber4,perl = TRUE)
|
|
1427 Ablnumber4<- gsub("V",V,Ablnumber4,perl = TRUE)
|
|
1428 Ablnumber4<- gsub("W",W,Ablnumber4,perl = TRUE)
|
|
1429 Ablnumber4<- gsub("Y",Y,Ablnumber4,perl = TRUE)
|
|
1430
|
|
1431 Ablnumber5<- gsub("A",A,Ablnumber5,perl = TRUE)
|
|
1432 Ablnumber5<- gsub("C",C,Ablnumber5,perl = TRUE)
|
|
1433 Ablnumber5<- gsub("D",D,Ablnumber5,perl = TRUE)
|
|
1434 Ablnumber5<- gsub("E",E,Ablnumber5,perl = TRUE)
|
|
1435 Ablnumber5<- gsub("F",F,Ablnumber5,perl = TRUE)
|
|
1436 Ablnumber5<- gsub("G",G,Ablnumber5,perl = TRUE)
|
|
1437 Ablnumber5<- gsub("H",H,Ablnumber5,perl = TRUE)
|
|
1438 Ablnumber5<- gsub("I",I,Ablnumber5,perl = TRUE)
|
|
1439 Ablnumber5<- gsub("K",K,Ablnumber5,perl = TRUE)
|
|
1440 Ablnumber5<- gsub("L",L,Ablnumber5,perl = TRUE)
|
|
1441 Ablnumber5<- gsub("M",M,Ablnumber5,perl = TRUE)
|
|
1442 Ablnumber5<- gsub("N",N,Ablnumber5,perl = TRUE)
|
|
1443 Ablnumber5<- gsub("P",P,Ablnumber5,perl = TRUE)
|
|
1444 Ablnumber5<- gsub("Q",Q,Ablnumber5,perl = TRUE)
|
|
1445 Ablnumber5<- gsub("R",R,Ablnumber5,perl = TRUE)
|
|
1446 Ablnumber5<- gsub("S",S,Ablnumber5,perl = TRUE)
|
|
1447 Ablnumber5<- gsub("T",T,Ablnumber5,perl = TRUE)
|
|
1448 Ablnumber5<- gsub("V",V,Ablnumber5,perl = TRUE)
|
|
1449 Ablnumber5<- gsub("W",W,Ablnumber5,perl = TRUE)
|
|
1450 Ablnumber5<- gsub("Y",Y,Ablnumber5,perl = TRUE)
|
|
1451
|
|
1452 Ablnumber6<- gsub("A",A,Ablnumber6,perl = TRUE)
|
|
1453 Ablnumber6<- gsub("C",C,Ablnumber6,perl = TRUE)
|
|
1454 Ablnumber6<- gsub("D",D,Ablnumber6,perl = TRUE)
|
|
1455 Ablnumber6<- gsub("E",E,Ablnumber6,perl = TRUE)
|
|
1456 Ablnumber6<- gsub("F",F,Ablnumber6,perl = TRUE)
|
|
1457 Ablnumber6<- gsub("G",G,Ablnumber6,perl = TRUE)
|
|
1458 Ablnumber6<- gsub("H",H,Ablnumber6,perl = TRUE)
|
|
1459 Ablnumber6<- gsub("I",I,Ablnumber6,perl = TRUE)
|
|
1460 Ablnumber6<- gsub("K",K,Ablnumber6,perl = TRUE)
|
|
1461 Ablnumber6<- gsub("L",L,Ablnumber6,perl = TRUE)
|
|
1462 Ablnumber6<- gsub("M",M,Ablnumber6,perl = TRUE)
|
|
1463 Ablnumber6<- gsub("N",N,Ablnumber6,perl = TRUE)
|
|
1464 Ablnumber6<- gsub("P",P,Ablnumber6,perl = TRUE)
|
|
1465 Ablnumber6<- gsub("Q",Q,Ablnumber6,perl = TRUE)
|
|
1466 Ablnumber6<- gsub("R",R,Ablnumber6,perl = TRUE)
|
|
1467 Ablnumber6<- gsub("S",S,Ablnumber6,perl = TRUE)
|
|
1468 Ablnumber6<- gsub("T",T,Ablnumber6,perl = TRUE)
|
|
1469 Ablnumber6<- gsub("V",V,Ablnumber6,perl = TRUE)
|
|
1470 Ablnumber6<- gsub("W",W,Ablnumber6,perl = TRUE)
|
|
1471 Ablnumber6<- gsub("Y",Y,Ablnumber6,perl = TRUE)
|
|
1472
|
|
1473 Ablnumber7<- gsub("A",A,Ablnumber7,perl = TRUE)
|
|
1474 Ablnumber7<- gsub("C",C,Ablnumber7,perl = TRUE)
|
|
1475 Ablnumber7<- gsub("D",D,Ablnumber7,perl = TRUE)
|
|
1476 Ablnumber7<- gsub("E",E,Ablnumber7,perl = TRUE)
|
|
1477 Ablnumber7<- gsub("F",F,Ablnumber7,perl = TRUE)
|
|
1478 Ablnumber7<- gsub("G",G,Ablnumber7,perl = TRUE)
|
|
1479 Ablnumber7<- gsub("H",H,Ablnumber7,perl = TRUE)
|
|
1480 Ablnumber7<- gsub("I",I,Ablnumber7,perl = TRUE)
|
|
1481 Ablnumber7<- gsub("K",K,Ablnumber7,perl = TRUE)
|
|
1482 Ablnumber7<- gsub("L",L,Ablnumber7,perl = TRUE)
|
|
1483 Ablnumber7<- gsub("M",M,Ablnumber7,perl = TRUE)
|
|
1484 Ablnumber7<- gsub("N",N,Ablnumber7,perl = TRUE)
|
|
1485 Ablnumber7<- gsub("P",P,Ablnumber7,perl = TRUE)
|
|
1486 Ablnumber7<- gsub("Q",Q,Ablnumber7,perl = TRUE)
|
|
1487 Ablnumber7<- gsub("R",R,Ablnumber7,perl = TRUE)
|
|
1488 Ablnumber7<- gsub("S",S,Ablnumber7,perl = TRUE)
|
|
1489 Ablnumber7<- gsub("T",T,Ablnumber7,perl = TRUE)
|
|
1490 Ablnumber7<- gsub("V",V,Ablnumber7,perl = TRUE)
|
|
1491 Ablnumber7<- gsub("W",W,Ablnumber7,perl = TRUE)
|
|
1492 Ablnumber7<- gsub("Y",Y,Ablnumber7,perl = TRUE)
|
|
1493
|
|
1494 Ablnumber8<- gsub("A",A,Ablnumber8,perl = TRUE)
|
|
1495 Ablnumber8<- gsub("C",C,Ablnumber8,perl = TRUE)
|
|
1496 Ablnumber8<- gsub("D",D,Ablnumber8,perl = TRUE)
|
|
1497 Ablnumber8<- gsub("E",E,Ablnumber8,perl = TRUE)
|
|
1498 Ablnumber8<- gsub("F",F,Ablnumber8,perl = TRUE)
|
|
1499 Ablnumber8<- gsub("G",G,Ablnumber8,perl = TRUE)
|
|
1500 Ablnumber8<- gsub("H",H,Ablnumber8,perl = TRUE)
|
|
1501 Ablnumber8<- gsub("I",I,Ablnumber8,perl = TRUE)
|
|
1502 Ablnumber8<- gsub("K",K,Ablnumber8,perl = TRUE)
|
|
1503 Ablnumber8<- gsub("L",L,Ablnumber8,perl = TRUE)
|
|
1504 Ablnumber8<- gsub("M",M,Ablnumber8,perl = TRUE)
|
|
1505 Ablnumber8<- gsub("N",N,Ablnumber8,perl = TRUE)
|
|
1506 Ablnumber8<- gsub("P",P,Ablnumber8,perl = TRUE)
|
|
1507 Ablnumber8<- gsub("Q",Q,Ablnumber8,perl = TRUE)
|
|
1508 Ablnumber8<- gsub("R",R,Ablnumber8,perl = TRUE)
|
|
1509 Ablnumber8<- gsub("S",S,Ablnumber8,perl = TRUE)
|
|
1510 Ablnumber8<- gsub("T",T,Ablnumber8,perl = TRUE)
|
|
1511 Ablnumber8<- gsub("V",V,Ablnumber8,perl = TRUE)
|
|
1512 Ablnumber8<- gsub("W",W,Ablnumber8,perl = TRUE)
|
|
1513 Ablnumber8<- gsub("Y",Y,Ablnumber8,perl = TRUE)
|
|
1514
|
|
1515 Ablnumber9<- gsub("A",A,Ablnumber9,perl = TRUE)
|
|
1516 Ablnumber9<- gsub("C",C,Ablnumber9,perl = TRUE)
|
|
1517 Ablnumber9<- gsub("D",D,Ablnumber9,perl = TRUE)
|
|
1518 Ablnumber9<- gsub("E",E,Ablnumber9,perl = TRUE)
|
|
1519 Ablnumber9<- gsub("F",F,Ablnumber9,perl = TRUE)
|
|
1520 Ablnumber9<- gsub("G",G,Ablnumber9,perl = TRUE)
|
|
1521 Ablnumber9<- gsub("H",H,Ablnumber9,perl = TRUE)
|
|
1522 Ablnumber9<- gsub("I",I,Ablnumber9,perl = TRUE)
|
|
1523 Ablnumber9<- gsub("K",K,Ablnumber9,perl = TRUE)
|
|
1524 Ablnumber9<- gsub("L",L,Ablnumber9,perl = TRUE)
|
|
1525 Ablnumber9<- gsub("M",M,Ablnumber9,perl = TRUE)
|
|
1526 Ablnumber9<- gsub("N",N,Ablnumber9,perl = TRUE)
|
|
1527 Ablnumber9<- gsub("P",P,Ablnumber9,perl = TRUE)
|
|
1528 Ablnumber9<- gsub("Q",Q,Ablnumber9,perl = TRUE)
|
|
1529 Ablnumber9<- gsub("R",R,Ablnumber9,perl = TRUE)
|
|
1530 Ablnumber9<- gsub("S",S,Ablnumber9,perl = TRUE)
|
|
1531 Ablnumber9<- gsub("T",T,Ablnumber9,perl = TRUE)
|
|
1532 Ablnumber9<- gsub("V",V,Ablnumber9,perl = TRUE)
|
|
1533 Ablnumber9<- gsub("W",W,Ablnumber9,perl = TRUE)
|
|
1534 Ablnumber9<- gsub("Y",Y,Ablnumber9,perl = TRUE)
|
|
1535 }
|
|
1536 ########################################
|
|
1537
|
|
1538
|
|
1539 total=length(Positionp7)*length(Positionp6)*length(Positionp5)*length(Positionp4)*length(Positionp3)*(length(Positionp2))*length(Positionp1)*
|
|
1540 length(Positiond0)*length(Positionm1)*length(Positionm2)*length(Positionm3)*length(Positionm4)*length(Positionm5)*length(Positionm6)*length(Positionm7)
|
|
1541 #this is just a way to doublecheck that the length of the generated peptides vector is correct
|
|
1542
|
|
1543 GeneratedPeptides<-rep(NA, times=total*15)
|
|
1544 GeneratedPeptides<-matrix(data = GeneratedPeptides,ncol = 15)
|
|
1545
|
|
1546 NumeratedPeptides<-GeneratedPeptides
|
|
1547 #create an empty vector of correct length by finding the number of each AAs per position and multiplying them
|
|
1548 count<-0
|
|
1549 for (t in 1:length(Positionm7)) {
|
|
1550 for (s in 1:length(Positionm6)) {
|
|
1551 for (r in 1:length(Positionm5)) {
|
|
1552 for (i in 1:length(Positionm4)) {
|
|
1553 for (j in 1:length(Positionm3)) {
|
|
1554 for (k in 1:length(Positionm2)) {
|
|
1555 for (l in 1:length(Positionm1)) {
|
|
1556 for (m in 1:length(Positiond0)) {
|
|
1557 for (n in 1:length(Positionp1)) {
|
|
1558 for (o in 1:length(Positionp2)) {
|
|
1559 for (p in 1:length(Positionp3)) {
|
|
1560 for (q in 1:length(Positionp4)) {
|
|
1561 for (u in 1:length(Positionp5)) {
|
|
1562 for (v in 1:length(Positionp6)) {
|
|
1563 for (w in 1:length(Positionp7)) {
|
|
1564 # i=1
|
|
1565 # j=1
|
|
1566 # k=1
|
|
1567 # l=1
|
|
1568 # m=1
|
|
1569 # n=1
|
|
1570 # o=1
|
|
1571 # p=1
|
|
1572 # q=1
|
|
1573 #
|
|
1574 #for every single position, increment the count number, create a peptide using the AAs at that position
|
|
1575 #then put them together into the generated peptides sequencex
|
|
1576 count<-count+1
|
|
1577 tabulation<-c(Positionm7[t],Positionm6[s],Positionm5[r],Positionm4[i],Positionm3[j],Positionm2[k],Positionm1[l],Positiond0[m],Positionp1[n],
|
|
1578 Positionp2[o],Positionp3[p],Positionp4[q],Positionp5[u],Positionp6[v],Positionp7[w])
|
|
1579 numeration<-c(number15[t],number14[s],number13[r],number1[i],number2[j],number3[k],number4[l],number5[m],number6[n],number7[o],number8[p],number9[q],number10[u],number11[v],
|
|
1580 number12[w])
|
|
1581 #tabulation<-paste(tabulation, sep="", collapse="")
|
|
1582 GeneratedPeptides[count,1:15]<-tabulation
|
|
1583 NumeratedPeptides[count,1:15]<-numeration
|
|
1584 }
|
|
1585 }
|
|
1586 }
|
|
1587 }
|
|
1588 }
|
|
1589 }
|
|
1590 }
|
|
1591 }
|
|
1592 }
|
|
1593 }
|
|
1594 }
|
|
1595 }
|
|
1596 }
|
|
1597 }
|
|
1598 }
|
|
1599 ####################################################################
|
|
1600 #now here I use the Endogenous Probabilty matrix from the previous script, which is called EMPtable
|
|
1601 #to score the created peptides
|
|
1602 ThisKinTable<-EPMtableu#[1:nrow(SDtable),]
|
|
1603 TKTcolumn<-c(data=rep(1,times=21))
|
|
1604 TKTcolumn<-as.matrix(TKTcolumn,ncol=1)
|
|
1605 ThisKinTable<-cbind(TKTcolumn,ThisKinTable)
|
|
1606
|
|
1607 ThisKinGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1608 ThisKinGenWeirdScore<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1609
|
|
1610 for (x in 1:nrow(GeneratedPeptides)){
|
|
1611 Scoringpeptide<-NumeratedPeptides[x,1:15]
|
|
1612 Scoringpeptide<-Scoringpeptide+1
|
|
1613 ThisKinTableScore<-as.numeric(ThisKinTable[Scoringpeptide[1],3])*ThisKinTable[as.numeric(Scoringpeptide[2]),4]*ThisKinTable[as.numeric(Scoringpeptide[3]),5]*
|
|
1614 ThisKinTable[as.numeric(Scoringpeptide[4]),6]*ThisKinTable[as.numeric(Scoringpeptide[5]),7]*ThisKinTable[as.numeric(Scoringpeptide[6]),8]*ThisKinTable[as.numeric(Scoringpeptide[7]),9]*
|
|
1615 #ThisKinTable[as.numeric(Scoringpeptide[8]),10]*
|
|
1616 ThisKinTable[as.numeric(Scoringpeptide[9]),11]*ThisKinTable[as.numeric(Scoringpeptide[10]),12]*ThisKinTable[as.numeric(Scoringpeptide[11]),13]*
|
|
1617 ThisKinTable[as.numeric(Scoringpeptide[12]),14]*ThisKinTable[as.numeric(Scoringpeptide[13]),15]*ThisKinTable[as.numeric(Scoringpeptide[14]),16]*ThisKinTable[as.numeric(Scoringpeptide[15]),17]
|
|
1618 ThisKinGeneratedScores[x]<-ThisKinTableScore
|
|
1619 ThisKinTableScore<-(ThisKinTableScore/(ThisKinTableScore+1/as.numeric(NormalizationScore[2])))
|
|
1620 ThisKinGenWeirdScore[x]<-ThisKinTableScore
|
|
1621 }
|
|
1622
|
|
1623 AblGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1624 ArgGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1625 BtkGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1626 CskGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1627 FynGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1628 HckGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1629 JAK2GeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1630 LckGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1631 LynGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1632 Pyk2GeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1633 SrcGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1634 SykGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1635 YesGeneratedScores<-rep(NA,times=nrow(GeneratedPeptides))
|
|
1636
|
|
1637
|
|
1638 for (x in 1:nrow(GeneratedPeptides)){
|
|
1639 Scoringpeptide<-NumeratedPeptides[x,1:15]
|
|
1640 AblScore<-Abl[Scoringpeptide[1],2]*Abl[Scoringpeptide[2],3]*Abl[Scoringpeptide[3],4]*Abl[Scoringpeptide[4],5]*Abl[Scoringpeptide[5],6]*Abl[Scoringpeptide[6],7]*
|
|
1641 Abl[Scoringpeptide[7],8]*Abl[Scoringpeptide[9],10]*Abl[Scoringpeptide[10],11]*Abl[Scoringpeptide[11],12]*Abl[Scoringpeptide[12],13]*
|
|
1642 Abl[Scoringpeptide[13],14]*Abl[Scoringpeptide[14],15]*Abl[Scoringpeptide[15],16]
|
|
1643 AblGeneratedScores[x]<-AblScore
|
|
1644
|
|
1645 ArgScore<-Arg[Scoringpeptide[1],2]*Arg[Scoringpeptide[2],3]*Arg[Scoringpeptide[3],4]*Arg[Scoringpeptide[4],5]*Arg[Scoringpeptide[5],6]*Arg[Scoringpeptide[6],7]*
|
|
1646 Arg[Scoringpeptide[7],8]*Arg[Scoringpeptide[9],10]*Arg[Scoringpeptide[10],11]*Arg[Scoringpeptide[11],12]*Arg[Scoringpeptide[12],13]*
|
|
1647 Arg[Scoringpeptide[13],14]*Arg[Scoringpeptide[14],15]*Arg[Scoringpeptide[15],16]
|
|
1648 ArgGeneratedScores[x]<-ArgScore
|
|
1649
|
|
1650 BtkScore<-Btk[Scoringpeptide[1],2]*Btk[Scoringpeptide[2],3]*Btk[Scoringpeptide[3],4]*Btk[Scoringpeptide[4],5]*Btk[Scoringpeptide[5],6]*Btk[Scoringpeptide[6],7]*
|
|
1651 Btk[Scoringpeptide[7],8]*Btk[Scoringpeptide[9],10]*Btk[Scoringpeptide[10],11]*Btk[Scoringpeptide[11],12]*Btk[Scoringpeptide[12],13]*
|
|
1652 Btk[Scoringpeptide[13],14]*Btk[Scoringpeptide[14],15]*Btk[Scoringpeptide[15],16]
|
|
1653 BtkGeneratedScores[x]<-BtkScore
|
|
1654
|
|
1655 CskScore<-Csk[Scoringpeptide[1],2]*Csk[Scoringpeptide[2],3]*Csk[Scoringpeptide[3],4]*Csk[Scoringpeptide[4],5]*Csk[Scoringpeptide[5],6]*Csk[Scoringpeptide[6],7]*
|
|
1656 Csk[Scoringpeptide[7],8]*Csk[Scoringpeptide[9],10]*Csk[Scoringpeptide[10],11]*Csk[Scoringpeptide[11],12]*Csk[Scoringpeptide[12],13]*
|
|
1657 Csk[Scoringpeptide[13],14]*Csk[Scoringpeptide[14],15]*Csk[Scoringpeptide[15],16]
|
|
1658 CskGeneratedScores[x]<-CskScore
|
|
1659
|
|
1660 FynScore<-Fyn[Scoringpeptide[1],2]*Fyn[Scoringpeptide[2],3]*Fyn[Scoringpeptide[3],4]*Fyn[Scoringpeptide[4],5]*Fyn[Scoringpeptide[5],6]*Fyn[Scoringpeptide[6],7]*
|
|
1661 Fyn[Scoringpeptide[7],8]*Fyn[Scoringpeptide[9],10]*Fyn[Scoringpeptide[10],11]*Fyn[Scoringpeptide[11],12]*Fyn[Scoringpeptide[12],13]*
|
|
1662 Fyn[Scoringpeptide[13],14]*Fyn[Scoringpeptide[14],15]*Fyn[Scoringpeptide[15],16]
|
|
1663 FynGeneratedScores[x]<-FynScore
|
|
1664
|
|
1665 HckScore<-Hck[Scoringpeptide[1],2]*Hck[Scoringpeptide[2],3]*Hck[Scoringpeptide[3],4]*Hck[Scoringpeptide[4],5]*Hck[Scoringpeptide[5],6]*Hck[Scoringpeptide[6],7]*
|
|
1666 Hck[Scoringpeptide[7],8]*Hck[Scoringpeptide[9],10]*Hck[Scoringpeptide[10],11]*Hck[Scoringpeptide[11],12]*Hck[Scoringpeptide[12],13]*
|
|
1667 Hck[Scoringpeptide[13],14]*Hck[Scoringpeptide[14],15]*Hck[Scoringpeptide[15],16]
|
|
1668 HckGeneratedScores[x]<-HckScore
|
|
1669
|
|
1670 JAK2Score<-JAK2[Scoringpeptide[1],2]*JAK2[Scoringpeptide[2],3]*JAK2[Scoringpeptide[3],4]*JAK2[Scoringpeptide[4],5]*JAK2[Scoringpeptide[5],6]*JAK2[Scoringpeptide[6],7]*
|
|
1671 JAK2[Scoringpeptide[7],8]*JAK2[Scoringpeptide[9],10]*JAK2[Scoringpeptide[10],11]*JAK2[Scoringpeptide[11],12]*JAK2[Scoringpeptide[12],13]*
|
|
1672 JAK2[Scoringpeptide[13],14]*JAK2[Scoringpeptide[14],15]*JAK2[Scoringpeptide[15],16]
|
|
1673 JAK2GeneratedScores[x]<-JAK2Score
|
|
1674
|
|
1675 LckScore<-Lck[Scoringpeptide[1],2]*Lck[Scoringpeptide[2],3]*Lck[Scoringpeptide[3],4]*Lck[Scoringpeptide[4],5]*Lck[Scoringpeptide[5],6]*Lck[Scoringpeptide[6],7]*
|
|
1676 Lck[Scoringpeptide[7],8]*Lck[Scoringpeptide[9],10]*Lck[Scoringpeptide[10],11]*Lck[Scoringpeptide[11],12]*Lck[Scoringpeptide[12],13]*
|
|
1677 Lck[Scoringpeptide[13],14]*Lck[Scoringpeptide[14],15]*Lck[Scoringpeptide[15],16]
|
|
1678 LckGeneratedScores[x]<-LckScore
|
|
1679
|
|
1680 LynScore<-Lyn[Scoringpeptide[1],2]*Lyn[Scoringpeptide[2],3]*Lyn[Scoringpeptide[3],4]*Lyn[Scoringpeptide[4],5]*Lyn[Scoringpeptide[5],6]*Lyn[Scoringpeptide[6],7]*
|
|
1681 Lyn[Scoringpeptide[7],8]*Lyn[Scoringpeptide[9],10]*Lyn[Scoringpeptide[10],11]*Lyn[Scoringpeptide[11],12]*Lyn[Scoringpeptide[12],13]*
|
|
1682 Lyn[Scoringpeptide[13],14]*Lyn[Scoringpeptide[14],15]*Lyn[Scoringpeptide[15],16]
|
|
1683 LynGeneratedScores[x]<-LynScore
|
|
1684
|
|
1685 Pyk2Score<-Pyk2[Scoringpeptide[1],2]*Pyk2[Scoringpeptide[2],3]*Pyk2[Scoringpeptide[3],4]*Pyk2[Scoringpeptide[4],5]*Pyk2[Scoringpeptide[5],6]*Pyk2[Scoringpeptide[6],7]*
|
|
1686 Pyk2[Scoringpeptide[7],8]*Pyk2[Scoringpeptide[9],10]*Pyk2[Scoringpeptide[10],11]*Pyk2[Scoringpeptide[11],12]*Pyk2[Scoringpeptide[12],13]*
|
|
1687 Pyk2[Scoringpeptide[13],14]*Pyk2[Scoringpeptide[14],15]*Pyk2[Scoringpeptide[15],16]
|
|
1688 Pyk2GeneratedScores[x]<-Pyk2Score
|
|
1689
|
|
1690 SrcScore<-Src[Scoringpeptide[1],2]*Src[Scoringpeptide[2],3]*Src[Scoringpeptide[3],4]*Src[Scoringpeptide[4],5]*Src[Scoringpeptide[5],6]*Src[Scoringpeptide[6],7]*
|
|
1691 Src[Scoringpeptide[7],8]*Src[Scoringpeptide[9],10]*Src[Scoringpeptide[10],11]*Src[Scoringpeptide[11],12]*Src[Scoringpeptide[12],13]*
|
|
1692 Src[Scoringpeptide[13],14]*Src[Scoringpeptide[14],15]*Src[Scoringpeptide[15],16]
|
|
1693 SrcGeneratedScores[x]<-SrcScore
|
|
1694
|
|
1695 SykScore<-Syk[Scoringpeptide[1],2]*Syk[Scoringpeptide[2],3]*Syk[Scoringpeptide[3],4]*Syk[Scoringpeptide[4],5]*Syk[Scoringpeptide[5],6]*Syk[Scoringpeptide[6],7]*
|
|
1696 Syk[Scoringpeptide[7],8]*Syk[Scoringpeptide[9],10]*Syk[Scoringpeptide[10],11]*Syk[Scoringpeptide[11],12]*Syk[Scoringpeptide[12],13]*
|
|
1697 Syk[Scoringpeptide[13],14]*Syk[Scoringpeptide[14],15]*Syk[Scoringpeptide[15],16]
|
|
1698 SykGeneratedScores[x]<-SykScore
|
|
1699
|
|
1700 YesScore<-Yes[Scoringpeptide[1],2]*Yes[Scoringpeptide[2],3]*Yes[Scoringpeptide[3],4]*Yes[Scoringpeptide[4],5]*Yes[Scoringpeptide[5],6]*Yes[Scoringpeptide[6],7]*
|
|
1701 Yes[Scoringpeptide[7],8]*Yes[Scoringpeptide[9],10]*Yes[Scoringpeptide[10],11]*Yes[Scoringpeptide[11],12]*Yes[Scoringpeptide[12],13]*
|
|
1702 Yes[Scoringpeptide[13],14]*Yes[Scoringpeptide[14],15]*Yes[Scoringpeptide[15],16]
|
|
1703 YesGeneratedScores[x]<-YesScore
|
|
1704
|
|
1705 # ThisKinTableScore<-ThisKinTable[as.numeric(Scoringpeptide[1]),3]*ThisKinTable[as.numeric(Scoringpeptide[2]),4]*ThisKinTable[as.numeric(Scoringpeptide[3]),5]*
|
|
1706 # ThisKinTable[as.numeric(Scoringpeptide[4]),6]*ThisKinTable[as.numeric(Scoringpeptide[6]),8]*
|
|
1707 # ThisKinTable[as.numeric(Scoringpeptide[7]),9]*ThisKinTable[as.numeric(Scoringpeptide[8]),10]*ThisKinTable[as.numeric(Scoringpeptide[9]),11]
|
|
1708 # ThisKinGeneratedScores[x]<-ThisKinTableScore
|
|
1709 }
|
|
1710
|
|
1711
|
|
1712
|
|
1713 AblNorm<-1/as.numeric(Abl[22,1])
|
|
1714 AblThresh<-as.numeric(Abl[24,1])
|
|
1715 AblTrueThresh<-((AblThresh*AblNorm)/(100-AblThresh))
|
|
1716 AblActive<-unlist(AblGeneratedScores)>AblTrueThresh
|
|
1717
|
|
1718 ArgNorm<-1/as.numeric(Arg[22,1])
|
|
1719 ArgThresh<-as.numeric(Arg[24,1])
|
|
1720 ArgTrueThresh<-((ArgThresh*ArgNorm)/(100-ArgThresh))
|
|
1721 ArgActive<-unlist(ArgGeneratedScores)>ArgTrueThresh
|
|
1722
|
|
1723 BtkNorm<-1/as.numeric(Btk[22,1])
|
|
1724 BtkThresh<-as.numeric(Btk[24,1])
|
|
1725 BtkTrueThresh<-((BtkThresh*BtkNorm)/(100-BtkThresh))
|
|
1726 BtkActive<-unlist(BtkGeneratedScores)>BtkTrueThresh
|
|
1727
|
|
1728 CskNorm<-1/as.numeric(Csk[22,1])
|
|
1729 CskThresh<-as.numeric(Csk[24,1])
|
|
1730 CskTrueThresh<-((CskThresh*CskNorm)/(100-CskThresh))
|
|
1731 CskActive<-(CskGeneratedScores)>CskTrueThresh
|
|
1732
|
|
1733 FynNorm<-1/as.numeric(Fyn[22,1])
|
|
1734 FynThresh<-as.numeric(Fyn[24,1])
|
|
1735 FynTrueThresh<-((FynThresh*FynNorm)/(100-FynThresh))
|
|
1736 FynActive<-unlist(FynGeneratedScores)>FynTrueThresh
|
|
1737
|
|
1738 HckNorm<-1/as.numeric(Hck[22,1])
|
|
1739 HckThresh<-as.numeric(Hck[24,1])
|
|
1740 HckTrueThresh<-((HckThresh*HckNorm)/(100-HckThresh))
|
|
1741 HckActive<-unlist(HckGeneratedScores)>HckTrueThresh
|
|
1742
|
|
1743 JAK2Norm<-1/as.numeric(JAK2[22,1])
|
|
1744 JAK2Thresh<-as.numeric(JAK2[24,1])
|
|
1745 JAK2TrueThresh<-((JAK2Thresh*JAK2Norm)/(100-JAK2Thresh))
|
|
1746 JAk2Active<-unlist(JAK2GeneratedScores)>JAK2TrueThresh
|
|
1747
|
|
1748 LckNorm<-1/as.numeric(Lck[22,1])
|
|
1749 LckThresh<-as.numeric(Lck[24,1])
|
|
1750 LckTrueThresh<-((LckThresh*LckNorm)/(100-LckThresh))
|
|
1751 LckActive<-unlist(LckGeneratedScores)>LckTrueThresh
|
|
1752
|
|
1753 LynNorm<-1/as.numeric(Lyn[22,1])
|
|
1754 LynThresh<-as.numeric(Lyn[24,1])
|
|
1755 LynTrueThresh<-((LynThresh*LynNorm)/(100-LynThresh))
|
|
1756 LynActive<-unlist(LynGeneratedScores)>LynTrueThresh
|
|
1757
|
|
1758 Pyk2Norm<-1/as.numeric(Pyk2[22,1])
|
|
1759 Pyk2Thresh<-as.numeric(Pyk2[24,1])
|
|
1760 Pyk2TrueThresh<-((Pyk2Thresh*Pyk2Norm)/(100-Pyk2Thresh))
|
|
1761 Pyk2Active<-unlist(Pyk2GeneratedScores)>Pyk2TrueThresh
|
|
1762
|
|
1763 SrcNorm<-1/as.numeric(Src[22,1])
|
|
1764 SrcThresh<-as.numeric(Src[24,1])
|
|
1765 SrcTrueThresh<-((SrcThresh*SrcNorm)/(100-SrcThresh))
|
|
1766 SrcActive<-unlist(SrcGeneratedScores)>SrcTrueThresh
|
|
1767
|
|
1768 SykNorm<-1/as.numeric(Syk[22,1])
|
|
1769 SykThresh<-as.numeric(Syk[24,1])
|
|
1770 SykTrueThresh<-((SykThresh*SykNorm)/(100-SykThresh))
|
|
1771 SykActive<-unlist(SykGeneratedScores)>SykTrueThresh
|
|
1772
|
|
1773 YesNorm<-1/as.numeric(Yes[22,1])
|
|
1774 YesThresh<-as.numeric(Yes[24,1])
|
|
1775 YesTrueThresh<-((YesThresh*YesNorm)/(100-YesThresh))
|
|
1776 YesActive<-unlist(YesGeneratedScores)>YesTrueThresh
|
|
1777
|
|
1778 AllActive<-AblActive+ArgActive+BtkActive+CskActive+FynActive+HckActive+JAk2Active+LckActive+LynActive+Pyk2Active+SrcActive+SykActive+YesActive
|
|
1779 #Btkactive+
|
|
1780
|
|
1781 Scores<-ThisKinGeneratedScores
|
|
1782 ThresholdValues<-ThisKinGenWeirdScore
|
|
1783
|
|
1784 FullMotifs<-rep("Z",times=nrow(GeneratedPeptides))
|
|
1785 for (i in 1:nrow(GeneratedPeptides)) {
|
|
1786 motif<-GeneratedPeptides[i,1:15]
|
|
1787 motif<-paste(motif,sep = "", collapse = "")
|
|
1788 FullMotifs[i]<-motif
|
|
1789 }
|
|
1790
|
|
1791 PeptidesWithRanks<-cbind.data.frame(FullMotifs,GeneratedPeptides,Scores,ThresholdValues)
|
|
1792 PeptidesWithRanks<-cbind.data.frame(PeptidesWithRanks,AllActive,AblActive,ArgActive,BtkActive,CskActive,FynActive,HckActive,JAk2Active,LckActive,LynActive,Pyk2Active,SrcActive,SykActive,YesActive)
|
|
1793 RanksPeptides<-PeptidesWithRanks[order(PeptidesWithRanks$AllActive,decreasing = FALSE),]
|
|
1794 # PepRankHead<-c(1:9,"Sequence","RPMS","PMS")
|
|
1795 # RanksPeptides<-rbind.data.frame(PepRankHead,PeptidesWithRanks)
|
|
1796 #head(RanksPeptides)
|
|
1797
|
|
1798
|
|
1799 #now I have to score the negative sequences... for some reason
|
|
1800 #write up how we transfect with lipofectamine
|
|
1801 #3,4,5 questions
|
|
1802
|
|
1803 #PAUSED EHRE AT 4:50, HOPING THAT FIXING MINERVOTHING SO THAT LEFT SPACES WORKS FIXES A THING. OTHERWISE
|
|
1804 #I FUCKED WITH THE MCC TABLE AND NEED TO FINISH IT
|
|
1805
|
|
1806 ThisKinBlanks<-rep(1,times=17)
|
|
1807 #indx <- sapply(breast, is.factor)
|
|
1808 #ThisKinTable[indx] <- lapply(ThisKinTable[indx], function(x) as.character(x))
|
|
1809 ThisKinTable$SetOfAAs<-as.character(ThisKinTable$SetOfAAs)
|
|
1810
|
|
1811 #ThisKinTest<-rbind.data.frame(ThisKinTable,ThisKinBlanks)
|
|
1812 ThisKinTable<-rbind.data.frame(ThisKinTable,ThisKinBlanks)
|
|
1813
|
|
1814 NegativeScores<-rep(NA,times=nrow(NegativeSubstrateList))
|
|
1815 NegativeWeirdScores<-rep(NA,times=nrow(NegativeSubstrateList))
|
|
1816 for (v in 1:nrow(NegativeSubstrateList)) {
|
|
1817 motif<-NegativeSubstrateList[v,2]
|
|
1818 motif<-unlist(strsplit(motif,""))
|
|
1819 #if (length(motif)<9){print(v)}}
|
|
1820 # motif[1] <- sapply(motif[1], function (x) aa_props[x])
|
|
1821 # motif[2] <- sapply(motif[2], function (x) aa_props[x])
|
|
1822 # motif[3] <- sapply(motif[3], function (x) aa_props[x])
|
|
1823 # motif[4] <- sapply(motif[4], function (x) aa_props[x])
|
|
1824 # motif[5] <- sapply(motif[5], function (x) aa_props[x])
|
|
1825 # motif[6] <- sapply(motif[6], function (x) aa_props[x])
|
|
1826 # motif[7] <- sapply(motif[7], function (x) aa_props[x])
|
|
1827 # motif[8] <- sapply(motif[8], function (x) aa_props[x])
|
|
1828 # motif[9] <- sapply(motif[9], function (x) aa_props[x])
|
|
1829 motif<- gsub(" ","O",motif)
|
|
1830 motif <- sapply(motif, function (x) aa_props[x])
|
|
1831 Scoringpeptide<-motif
|
|
1832 Scoringpeptide<-Scoringpeptide+1
|
|
1833 ThisKinTableScore<-as.numeric(ThisKinTable[Scoringpeptide[1],3])*ThisKinTable[as.numeric(Scoringpeptide[2]),4]*ThisKinTable[as.numeric(Scoringpeptide[3]),5]*
|
|
1834 ThisKinTable[as.numeric(Scoringpeptide[4]),6]*ThisKinTable[as.numeric(Scoringpeptide[5]),7]*ThisKinTable[as.numeric(Scoringpeptide[6]),8]*ThisKinTable[as.numeric(Scoringpeptide[7]),9]*
|
|
1835 #ThisKinTable[as.numeric(Scoringpeptide[8]),10]*
|
|
1836 ThisKinTable[as.numeric(Scoringpeptide[9]),11]*ThisKinTable[as.numeric(Scoringpeptide[10]),12]*ThisKinTable[as.numeric(Scoringpeptide[11]),13]*
|
|
1837 ThisKinTable[as.numeric(Scoringpeptide[12]),14]*ThisKinTable[as.numeric(Scoringpeptide[13]),15]*ThisKinTable[as.numeric(Scoringpeptide[14]),16]*ThisKinTable[as.numeric(Scoringpeptide[15]),17]
|
|
1838 NegativeScores[v]<-ThisKinTableScore
|
|
1839 ThisKinTableScore<-(ThisKinTableScore/(ThisKinTableScore+1/as.numeric(NormalizationScore[2])))
|
|
1840 NegativeWeirdScores[v]<-ThisKinTableScore*100
|
|
1841 }
|
|
1842
|
|
1843 negativesubstrates<-NegativeSubstrateList[,2]
|
|
1844 NegativeWithScores<-cbind(negativesubstrates,as.character(NegativeScores),as.character(NegativeWeirdScores))
|
|
1845
|
|
1846
|
|
1847 #NEED TO HAVE THE NEGATIVE SUBSTRATES BE OUTPUTTED
|
|
1848
|
|
1849 PositiveScores<-rep(NA,times=nrow(ImportedSubstrateList))
|
|
1850 PositiveWeirdScores<-rep(NA,times=nrow(ImportedSubstrateList))
|
|
1851
|
|
1852 for (v in 1:nrow(ImportedSubstrateList)) {
|
|
1853 motif<-ImportedSubstrateList[v,4:18]
|
|
1854 motif<-unlist(motif)
|
|
1855 motif<- gsub("^$","O",motif)
|
|
1856 motif <- sapply(motif, function (x) aa_props[x])
|
|
1857 Scoringpeptide<-motif
|
|
1858 Scoringpeptide<-Scoringpeptide+1
|
|
1859 ThisKinTableScore<-as.numeric(ThisKinTable[Scoringpeptide[1],3])*ThisKinTable[as.numeric(Scoringpeptide[2]),4]*ThisKinTable[as.numeric(Scoringpeptide[3]),5]*
|
|
1860 ThisKinTable[as.numeric(Scoringpeptide[4]),6]*ThisKinTable[as.numeric(Scoringpeptide[5]),7]*ThisKinTable[as.numeric(Scoringpeptide[6]),8]*ThisKinTable[as.numeric(Scoringpeptide[7]),9]*
|
|
1861 #ThisKinTable[as.numeric(Scoringpeptide[8]),10]*
|
|
1862 ThisKinTable[as.numeric(Scoringpeptide[9]),11]*ThisKinTable[as.numeric(Scoringpeptide[10]),12]*ThisKinTable[as.numeric(Scoringpeptide[11]),13]*
|
|
1863 ThisKinTable[as.numeric(Scoringpeptide[12]),14]*ThisKinTable[as.numeric(Scoringpeptide[13]),15]*ThisKinTable[as.numeric(Scoringpeptide[14]),16]*ThisKinTable[as.numeric(Scoringpeptide[15]),17]
|
|
1864
|
|
1865 PositiveScores[v]<-ThisKinTableScore
|
|
1866 ThisKinTableScore<-(ThisKinTableScore/(ThisKinTableScore+1/as.numeric(NormalizationScore[2])))
|
|
1867 PositiveWeirdScores[v]<-ThisKinTableScore*100
|
|
1868 }
|
|
1869
|
|
1870 positivesubstrates<-ImportedSubstrateList[,4:18]
|
|
1871 positivewithscores<-cbind.data.frame(positivesubstrates,PositiveScores,PositiveWeirdScores)
|
|
1872
|
|
1873
|
|
1874 #write down the transient transfection SOP and what we will be doing with them
|
|
1875 #write down the vector names I will be using
|
|
1876 #write down something about transforming bacteria and with what
|
|
1877
|
|
1878 #90% whatevernness
|
|
1879 # TPninetyone<-length(PositiveWeirdScores[PositiveWeirdScores>=0.91])
|
|
1880 # Senseninetyone<-TPninetyone/nrow(positivesubstrates)
|
|
1881 #
|
|
1882 # TNninetyone<-length(NegativeWeirdScores[NegativeWeirdScores<91])
|
|
1883 # Specninetyone<-TNninetyone/100
|
|
1884
|
|
1885 #create the MCC table
|
|
1886
|
|
1887 threshold<-c(1:100)
|
|
1888 threshold<-order(threshold,decreasing = TRUE)
|
|
1889
|
|
1890 Truepositives<-c(1:100)
|
|
1891 Falsenegatives<-c(1:100)
|
|
1892 Sensitivity<-c(1:100)
|
|
1893 TrueNegatives<-c(1:100)
|
|
1894 FalsePositives<-c(1:100)
|
|
1895 Specificity<-c(1:100)
|
|
1896 Accuracy<-c(1:100)
|
|
1897 MCC<-c(1:100)
|
|
1898 EER<-c(1:100)
|
|
1899
|
|
1900 #MAKE DAMN SURE THAT THE ACCESSION NUMBERS FOLLOW THE MOTIFS
|
|
1901
|
|
1902 for (z in 1:100) {
|
|
1903 thres<-101-z
|
|
1904 Truepositives[z]<-length(PositiveWeirdScores[PositiveWeirdScores>=(thres)])
|
|
1905 Falsenegatives[z]<-nrow(positivesubstrates)-Truepositives[z]
|
|
1906 Sensitivity[z]<-Truepositives[z]/(Falsenegatives[z]+Truepositives[z])
|
|
1907 TrueNegatives[z]<-length(NegativeWeirdScores[NegativeWeirdScores<(thres)])
|
|
1908 # at thresh 100 this should be 0, because it is total minus true negatives
|
|
1909 FalsePositives[z]<-nrow(NegativeSubstrateList)-TrueNegatives[z]
|
|
1910 Specificity[z]<-1-(TrueNegatives[z]/(FalsePositives[z]+TrueNegatives[z]))
|
|
1911 Accuracy[z]<-100*(Truepositives[z]+TrueNegatives[z])/(Falsenegatives[z]+FalsePositives[z]+TrueNegatives[z]+Truepositives[z])
|
|
1912 MCC[z]<-((Truepositives[z]+TrueNegatives[z])-(Falsenegatives[z]+FalsePositives[z]))/sqrt(round(round(Truepositives[z]+Falsenegatives[z])*round(TrueNegatives[z]+FalsePositives[z])*round(Truepositives[z]+FalsePositives[z])*round(TrueNegatives[z]+Falsenegatives[z])))
|
|
1913 EER[z]<-.01*(((1-(Sensitivity[z]))*(Truepositives[z]+Falsenegatives[z]))+(Specificity[z]*(1-(Truepositives[z]+Falsenegatives[z]))))
|
|
1914 }
|
|
1915 Characterization<-cbind.data.frame(threshold,Truepositives,Falsenegatives,Sensitivity,TrueNegatives,FalsePositives,Specificity,Accuracy,MCC,EER)
|
|
1916
|
|
1917 positiveheader<-c(1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,"RPMS","PMS")
|
|
1918 positivewithscores<-rbind.data.frame(positiveheader,positivewithscores)
|
|
1919
|
|
1920 negativeheader<-c("Substrate","RPMS","PMS")
|
|
1921 colnames(NegativeWithScores)<-negativeheader
|
|
1922
|
|
1923 # write.xlsx(NegativeWithScores,file = FILENAME, sheetName = "Negative Sequences Scored",col.names = TRUE,row.names = FALSE,append = TRUE)
|
|
1924 # write.xlsx(Characterization,file = FILENAME,sheetName = "Characterization Table",col.names = TRUE,row.names = FALSE,append = TRUE)
|
|
1925 # write.xlsx(RanksPeptides,file = FILENAME,sheetName = "Ranked Generated Peptides",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1926 # write.xlsx(positivewithscores,file = FILENAME, sheetName = "Positive Sequences Scored",col.names = FALSE,row.names = FALSE,append = TRUE)
|
|
1927 write.table(x=c("Characterzation Table"),file = FILENAME2, col.names = FALSE,row.names = FALSE, append = TRUE,sep = ",")
|
|
1928 header<-colnames(Characterization)
|
|
1929 Characterization<-rbind.data.frame(header,Characterization)
|
|
1930 write.table(Characterization,file = FILENAME2, col.names = FALSE,row.names = FALSE, append = TRUE,sep = ",")
|
|
1931
|
|
1932 # header<-colnames(RanksPeptides)
|
|
1933 # RanksPeptides<-rbind.data.frame(header,RanksPeptides)
|
|
1934 write.table(RanksPeptides,file = FILENAME3,append = FALSE,row.names = FALSE,col.names = TRUE,sep = ",")
|