--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Tue Nov 22 07:08:27 WET 2016 codeml.models=0 1 2 3 7 8 mrbayes.mpich= mrbayes.ngen=1000000 tcoffee.alignMethod=CLUSTALW2 tcoffee.params= tcoffee.maxSeqs=0 codeml.bin=codeml mrbayes.tburnin=2500 codeml.dir= input.sequences= mrbayes.pburnin=2500 mrbayes.bin=mb_adops tcoffee.bin=t_coffee_ADOPS mrbayes.dir=/usr/bin/ tcoffee.dir= tcoffee.minScore=3 input.fasta=/opt/ADOPS/3/acj6-PA/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": (Use the harmonic mean for Bayes factor comparisons of models) (Values are saved to the file /opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -2529.96 -2551.15 2 -2529.99 -2548.84 -------------------------------------- TOTAL -2529.98 -2550.55 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": Summaries are based on a total of 3002 samples from 2 runs. Each run produced 2001 samples of which 1501 samples were included. Parameter summaries saved to file "/opt/ADOPS/3/acj6-PA/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 0.388870 0.003668 0.267241 0.501044 0.384252 1142.57 1268.00 1.000 r(A<->C){all} 0.136866 0.001298 0.068747 0.208071 0.134329 367.59 701.73 1.000 r(A<->G){all} 0.211366 0.002158 0.122588 0.297822 0.208204 725.93 767.02 1.000 r(A<->T){all} 0.117534 0.001474 0.046844 0.193996 0.114783 606.55 757.27 1.000 r(C<->G){all} 0.058555 0.000334 0.024577 0.092711 0.056654 696.37 993.64 1.001 r(C<->T){all} 0.466122 0.003643 0.342929 0.578361 0.464967 416.35 574.22 1.000 r(G<->T){all} 0.009556 0.000075 0.000003 0.026217 0.007289 970.00 987.14 1.000 pi(A){all} 0.242021 0.000145 0.217050 0.264624 0.241905 1073.52 1213.74 1.000 pi(C){all} 0.301060 0.000168 0.275623 0.326073 0.301016 1056.85 1138.60 1.000 pi(G){all} 0.264781 0.000155 0.239445 0.287840 0.264277 996.78 1125.23 1.000 pi(T){all} 0.192138 0.000119 0.170609 0.212532 0.191876 1106.84 1178.83 1.000 alpha{1,2} 0.111486 0.000477 0.073377 0.155993 0.110410 1187.71 1233.00 1.000 alpha{3} 2.275989 0.607669 0.918421 3.763686 2.156273 1343.51 1422.25 1.000 pinvar{all} 0.733839 0.000903 0.676049 0.791807 0.735715 1501.00 1501.00 1.000 ------------------------------------------------------------------------------------------------------ * Convergence diagnostic (ESS = Estimated Sample Size); min and avg values correspond to minimal and average ESS among runs. ESS value below 100 may indicate that the parameter is undersampled. + Convergence diagnostic (PSRF = Potential Scale Reduction Factor; Gelman and Rubin, 1992) should approach 1.0 as runs converge. Setting sumt conformat to Simple --- CODEML SUMMARY Model 1: NearlyNeutral -2424.472164 Model 2: PositiveSelection -2423.358373 Model 0: one-ratio -2444.886617 Model 3: discrete -2423.358373 Model 7: beta -2430.298095 Model 8: beta&w>1 -2423.365954 Model 0 vs 1 40.82890600000064 Model 2 vs 1 2.227581999999529 Model 8 vs 7 13.864282000000458 Additional information for M7 vs M8: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: D_melanogaster_acj6-PA) Pr(w>1) post mean +- SE for w 46 S 0.999** 2.336 47 S 0.996** 2.330 48 C 0.995** 2.326 49 D 0.999** 2.336 51 L 1.000** 2.339 Bayes Empirical Bayes (BEB) analysis (Yang, Wong & Nielsen 2005. Mol. Biol. Evol. 22:1107-1118) Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: D_melanogaster_acj6-PA) Pr(w>1) post mean +- SE for w 46 S 0.854 1.861 +- 1.036 47 S 0.739 1.640 +- 1.048 48 C 0.688 1.528 +- 1.021 49 D 0.812 1.760 +- 0.998 51 L 0.874 1.874 +- 0.972
>C1 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C2 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C3 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C4 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C5 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C6 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C7 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C8 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C9 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIYTHHLPS FQSRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQAQ HVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLDP TGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHHG HSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQADV GKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEAQ AKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKIA AIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGYo >C10 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY >C11 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY CLUSTAL FORMAT for T-COFFEE Version_10.00.r1613 [http://www.tcoffee.org] [MODE: ], CPU=0.00 sec, SCORE=100, Nseq=11, Len=397 C1 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C2 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C3 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C4 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C5 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C6 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C7 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C8 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C9 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIYT-HHLP C10 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD C11 MTMSMYSTTDKMKMSAPSCFPGRYSPSYRSSEQMRRCMPNPSIHISSSCD *******************************************: C1 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C2 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C3 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C4 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C5 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C6 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C7 SLESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C8 SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C9 SFQSRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C10 SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA C11 SIESRLLEDASLLCNSWSARQNGDIFAGINDGILSRAEALAAVDIQKHQA *::*********************************************** C1 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C2 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C3 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C4 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C5 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C6 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C7 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C8 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C9 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C10 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD C11 QHVHSQMPSQIKHDVMYHHHSMSGPPQRPLQENPFSRQMHHSMDQLDMLD ************************************************** C1 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C2 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C3 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C4 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C5 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C6 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C7 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C8 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C9 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C10 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH C11 PTGSMTTLAPISESPLTPTHQHLHGSYHSMNHMMSHHHPGTLSGHTGGHH ************************************************** C1 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C2 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C3 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C4 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C5 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C6 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C7 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C8 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C9 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C10 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD C11 GHSAVHHPVITAAVAAAGLHPDTDTDPRELEAFAERFKQRRIKLGVTQAD ************************************************** C1 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C2 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C3 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C4 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C5 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C6 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C7 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C8 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C9 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C10 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA C11 VGKALANLKLPGVGALSQSTICRFESLTLSHNNMIALKPILQAWLEEAEA ************************************************** C1 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C2 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C3 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C4 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C5 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C6 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C7 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C8 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C9 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C10 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI C11 QAKNKRRDPDAPSVLPAGEKKRKRTSIAAPEKRSLEAYFAVQPRPSGEKI ************************************************** C1 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C2 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C3 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C4 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C5 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C6 AAIAEKLDLKKNVVRVWFCNQRQKQKRIVSSVTPSMTGHGSAGFGY- C7 AAIAEKLDLKKN