Tag |
Content |
WERAM ID |
WERAM-Pof-0055 |
Ensembl Protein ID |
ENSPFOP00000004463.2 |
Gene Name |
setdb1b |
Ensembl Information |
|
Status |
Unreviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
SUV39 |
1.30e-72 |
243.2 |
58 |
1188 |
Me_Reader |
Tudor |
0.025 |
15.4 |
291 |
405 |
|
Organism |
Poecilia formosa |
Domain Profile |
HMT SUV39
SUV39.txt 59 esvenlkegyesdvp 73 e++++ ke++e +++ ENSPFOP00000004463.2 58 EEWVEQKEKEEAKTE 72 223333333332222 PP SUV39.txt 14 GvrclddiakgsFvciyaGeiltddeaeke 43 G r + + + g+ v yaG + + +++++ ENSPFOP00000004463.2 293 GARVVAKYKDGNLVWLYAGIVAEMPNNKNR 322 77999999***********99888777665 PP SUV39.txt 1 vrLqvfktenkGwGvrclddiakgsFvciyaGeiltddeaekegleegdeyladldskesvenlkegyesdvplssdss........ 79 vrLq+fkt+nkGwG+rclddiakgsFvciyaG+iltdd+a+kegle+gdey+a+ld++esven+kegyes++ +s+ + ENSPFOP00000004463.2 820 VRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESEAHCSDSEGsgvdvsrm 906 79************************************************************************988879******* PP SUV39.txt 80 ....................................................................................... 79 ENSPFOP00000004463.2 907 kiqpsalvssgaarkkaqsssssddsndeeekdsksedesdssddtfvkdnyytpssvwrsyttrgqakgnkegsqdskdglsvsak 993 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSPFOP00000004463.2 994 gqddekppsmpeetgkskvaswltsqglnqikteqskkqdvmtlsdsddvqtissgsednkdrekatpgvtkkqvavkstrgialkn 1080 *************************************************************************************** PP SUV39.txt 80 .....................................ntrqekdkeeseyiidakkegnvgrflnHscspNlfvqnvfvdthdlrfp 129 ntr ++d+ees+yiidak egn+gr+lnHscspNlfvqnvfvdthdlrfp ENSPFOP00000004463.2 1081 shsmmvkpsgggvgpsvqgskpghqgqpgggaenapkNTRLFFDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFP 1167 *************************************************************************************** PP SUV39.txt 130 rvafFaskrikagtELtwdYg 150 +vafFaskri+agtELtwdY+ ENSPFOP00000004463.2 1168 WVAFFASKRIRAGTELTWDYN 1188 ********************7 PP
Me_Reader Tudor
Tudor.txt 3 kvGlrVvakwssdG..yfYsgkiVvkghr 29 vG rVvak++ dG + ++ iV ++ ENSPFOP00000004463.2 291 YVGARVVAKYK-DGnlVWLYAGIV---AE 315 69*********.998766666665...44 PP Tudor.txt 2 skvGlrVvakwssdGyfYsgkiVvkghrvesg 33 +kvG+ + w+ G++++ k+ ++v+s+ ENSPFOP00000004463.2 380 LKVGQIIKTEWE--GTWWKSKV----EEVDSS 405 79**********..********....888774 PP
|
Protein Sequence (Fasta) | LLMDIKLCPL LRMEVDGWDP SLEDELGVSL DDLKKWIEEA VEQSEAVKKK KAQLIELEEW 60 VEQKEKEEAK TEKLLNDANQ SVLECEKLVR AAYENNGLVY RESSSDDEGG GGGGLPSEVI 120 EIDDDDDDDV IAVGCSSVVP PKTQAPSKDP TLNEASAVLQ KTTQQVQKLV QIVTKPSSAS 180 PLIRTAVQSV VQPDPAGVQS TTPAIFVSQA PSHQTMTQTQ PNPNIKEDEL KVGMNILGKK 240 RTKTWHKGNL VAINPVGNGV FKYKVRFDKG KSLLSGNHVA FDYNPTLESL YVGARVVAKY 300 KDGNLVWLYA GIVAEMPNNK NRMRFLIFFD DGYASYVILP ELYPVCRPLK RTWEDIEDAS 360 CRDFIEEYIS AYPSRPMVLL KVGQIIKTEW EGTWWKSKVE EVDSSLVKIL FLDDKRSEWI 420 YRGSTRLEPM FNLKLASANT QEKKLAGHQR TRPNMGALRS KGPVVQYTGV EHVGVSPAKP 480 PQTTQSQPPA MTLIQHSRNK HQMAKKSTSN FIPGVGGTHA SKILQAASAN ASNLSVGKVQ 540 STPNTPTSSF TPPYQRQTTA LAPPPSIVTH AMATIPQQPS YRAPTDRIFY LAHTCQPACL 600 NRVRPAKSDL HRGKNPLLTP LLYDFRRMTG RRKVNRKMSF HVIYKAPCGL CLRNMGEIQN 660 YLFQTRCDFI FLEMFCLDPY VLVDRPFQPQ RPFYYIPDIT SGKEDIPLSC VNEIDTTPPP 720 NVKYSKERIP EDGVFINTSS DFLVGCECTD GCKDKSKCSC HQLTLQASGC TPGGQINQSA 780 GYSYKRLEEC LPTGIYECNK RCKCCAQMCT NRLVQHGLQV RLQLFKTQNK GWGIRCLDDI 840 AKGSFVCIYA GKILTDDFAD KEGLEMGDEY FANLDHIESV ENFKEGYESE AHCSDSEGSG 900 VDVSRMKIQP SALVSSGAAR KKAQSSSSSD DSNDEEEKDS KSEDESDSSD DTFVKDNYYT 960 PSSVWRSYTT RGQAKGNKEG SQDSKDGLSV SAKGQDDEKP PSMPEETGKS KVASWLTSQG 1020 LNQIKTEQSK KQDVMTLSDS DDVQTISSGS EDNKDREKAT PGVTKKQVAV KSTRGIALKN 1080 SHSMMVKPSG GGVGPSVQGS KPGHQGQPGG GAENAPKNTR LFFDGEESCY IIDAKLEGNL 1140 GRYLNHSCSP NLFVQNVFVD THDLRFPWVA FFASKRIRAG TELTWDYNYE VGSVEGKELL 1200 CCCGSTECRG RLL 1213Protein Fasta Sequence
>ENSPFOP00000004463.2|Tudor|Poecilia formosa LLMDIKLCPLLRMEVDGWDPSLEDELGVSLDDLKKWIEEAVEQSEAVKKKKAQLIELEEWVEQKEKEEAKTEKLLNDANQSVLECEKLVRAAYENNGLVYRESSSDDEGGGGGGLPSEVIEIDDDDDDDVIAVGCSSVVPPKTQAPSKDPTLNEASAVLQKTTQQVQKLVQIVTKPSSASPLIRTAVQSVVQPDPAGVQSTTPAIFVSQAPSHQTMTQTQPNPNIKEDELKVGMNILGKKRTKTWHKGNLVAINPVGNGVFKYKVRFDKGKSLLSGNHVAFDYNPTLESLYVGARVVAKYKDGNLVWLYAGIVAEMPNNKNRMRFLIFFDDGYASYVILPELYPVCRPLKRTWEDIEDASCRDFIEEYISAYPSRPMVLLKVGQIIKTEWEGTWWKSKVEEVDSSLVKILFLDDKRSEWIYRGSTRLEPMFNLKLASANTQEKKLAGHQRTRPNMGALRSKGPVVQYTGVEHVGVSPAKPPQTTQSQPPAMTLIQHSRNKHQMAKKSTSNFIPGVGGTHASKILQAASANASNLSVGKVQSTPNTPTSSFTPPYQRQTTALAPPPSIVTHAMATIPQQPSYRAPTDRIFYLAHTCQPACLNRVRPAKSDLHRGKNPLLTPLLYDFRRMTGRRKVNRKMSFHVIYKAPCGLCLRNMGEIQNYLFQTRCDFIFLEMFCLDPYVLVDRPFQPQRPFYYIPDITSGKEDIPLSCVNEIDTTPPPNVKYSKERIPEDGVFINTSSDFLVGCECTDGCKDKSKCSCHQLTLQASGCTPGGQINQSAGYSYKRLEECLPTGIYECNKRCKCCAQMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESEAHCSDSEGSGVDVSRMKIQPSALVSSGAARKKAQSSSSSDDSNDEEEKDSKSEDESDSSDDTFVKDNYYTPSSVWRSYTTRGQAKGNKEGSQDSKDGLSVSAKGQDDEKPPSMPEETGKSKVASWLTSQGLNQIKTEQSKKQDVMTLSDSDDVQTISSGSEDNKDREKATPGVTKKQVAVKSTRGIALKNSHSMMVKPSGGGVGPSVQGSKPGHQGQPGGGAENAPKNTRLFFDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGSTECRGRLL
|
Nucleotide Sequence (Fasta) | CTGCTGATGG ACATAAAGTT GTGTCCCCTC CTCAGAATGG AGGTCGACGG CTGGGACCCC 60 AGTCTGGAGG ACGAGTTGGG AGTTTCACTG GATGACCTGA AGAAATGGAT TGAGGAGGCC 120 GTGGAGCAGA GCGAGGCTGT GAAGAAGAAA AAAGCCCAGC TGATAGAGCT CGAGGAATGG 180 GTGGAACAGA AAGAGAAAGA AGAGGCGAAG ACAGAGAAAC TTCTCAACGA TGCCAACCAG 240 TCCGTTTTGG AGTGTGAGAA GCTAGTGAGG GCAGCGTATG AAAACAACGG CCTCGTCTAC 300 CGAGAGAGCA GCTCAGACGA TGAAGGCGGC GGAGGAGGAG GGCTCCCCTC TGAAGTCATC 360 GAGATTGATG ACGATGATGA CGATGACGTC ATAGCTGTGG GATGTTCATC AGTGGTTCCT 420 CCAAAGACAC AAGCGCCATC TAAGGACCCA ACATTAAACG AAGCCTCTGC AGTTCTGCAG 480 AAAACCACCC AGCAGGTCCA GAAGTTGGTC CAAATAGTCA CCAAGCCCTC CTCTGCCTCG 540 CCTTTGATAC GAACAGCAGT GCAGTCTGTA GTTCAGCCAG ATCCTGCAGG AGTTCAGAGC 600 ACGACACCAG CTATATTTGT ATCACAAGCT CCGTCTCATC AGACGATGAC GCAGACGCAG 660 CCAAACCCCA ACATAAAAGA AGATGAGCTC AAAGTGGGGA TGAACATCCT GGGAAAGAAA 720 CGCACCAAGA CGTGGCATAA AGGCAACCTG GTGGCAATTA ACCCTGTTGG AAACGGTGTG 780 TTTAAGTACA AGGTGAGGTT TGATAAAGGC AAGAGTCTGC TGTCTGGGAA CCATGTGGCG 840 TTTGACTACA ACCCCACCCT GGAGAGCCTG TACGTCGGGG CTCGTGTTGT CGCCAAGTAC 900 AAAGACGGAA ACCTGGTGTG GCTGTACGCT GGAATCGTGG CAGAGATGCC AAACAACAAG 960 AACCGGATGA GGTTTCTGAT CTTCTTTGAC GACGGCTACG CTTCATATGT GATCCTTCCT 1020 GAACTCTATC CAGTTTGCAG ACCATTAAAG CGAACTTGGG AAGACATAGA GGATGCATCT 1080 TGTCGGGACT TCATCGAGGA GTACATCTCC GCCTATCCCA GCAGGCCGAT GGTGCTCCTA 1140 AAGGTCGGCC AGATAATCAA GACGGAGTGG GAGGGGACCT GGTGGAAGAG CAAAGTGGAG 1200 GAGGTGGACA GCAGCTTGGT CAAGATCCTC TTTCTGGACG ATAAGAGGAG CGAATGGATT 1260 TACAGAGGAT CCACCAGGTT GGAGCCCATG TTCAATCTGA AACTGGCTTC AGCAAACACT 1320 CAAGAAAAGA AGCTAGCTGG CCACCAGAGG ACAAGGCCAA ACATGGGAGC ACTAAGGAGT 1380 AAAGGCCCAG TCGTTCAGTA CACTGGCGTC GAACACGTCG GAGTTTCTCC TGCCAAACCT 1440 CCTCAAACGA CACAGAGTCA GCCGCCAGCG ATGACTCTGA TCCAGCACTC AAGAAATAAA 1500 CATCAGATGG CAAAGAAGAG CACGTCTAAT TTCATCCCTG GTGTCGGCGG GACGCACGCC 1560 TCCAAGATCC TGCAGGCTGC GTCCGCTAAC GCCAGCAACC TCTCAGTTGG AAAGGTGCAG 1620 AGCACCCCGA ACACGCCCAC GTCCTCCTTC ACGCCTCCGT ATCAGAGACA GACGACCGCC 1680 CTGGCGCCTC CCCCTTCCAT CGTCACGCAC GCGATGGCCA CCATCCCTCA GCAGCCGTCC 1740 TACAGAGCCC CGACGGACCG CATCTTCTAC CTGGCTCACA CCTGCCAGCC TGCATGTCTG 1800 AACCGCGTCC GACCAGCAAA GTCAGACCTG CACAGAGGAA AGAACCCCCT CCTCACTCCG 1860 CTGCTCTACG ACTTCAGACG CATGACGGGA CGACGCAAAG TCAACCGTAA AATGTCCTTC 1920 CACGTTATCT ACAAGGCTCC GTGTGGACTT TGTCTGCGTA ACATGGGGGA GATCCAGAAC 1980 TACCTCTTCC AGACCCGCTG TGACTTTATA TTCTTAGAGA TGTTCTGCCT CGACCCGTAC 2040 GTCCTGGTGG ACCGGCCTTT CCAGCCGCAA AGGCCCTTCT ATTACATTCC AGACATCACT 2100 AGTGGGAAGG AGGACATCCC TCTGTCCTGC GTCAATGAGA TTGACACCAC TCCACCACCT 2160 AACGTAAAAT ACAGCAAGGA GCGAATCCCT GAAGACGGAG TATTTATTAA CACCAGTTCA 2220 GACTTCCTGG TCGGCTGTGA ATGTACCGAC GGCTGCAAAG ACAAATCCAA ATGTTCCTGC 2280 CACCAGCTGA CCCTGCAGGC TTCAGGCTGC ACACCTGGGG GGCAGATCAA CCAGAGCGCC 2340 GGATATTCAT ACAAACGATT AGAGGAGTGC TTACCTACAG GCATCTATGA GTGCAACAAA 2400 AGGTGTAAAT GTTGTGCTCA GATGTGCACC AACCGGCTGG TGCAGCACGG CCTGCAGGTC 2460 CGTCTGCAGC TCTTTAAGAC CCAGAACAAA GGCTGGGGCA TTCGCTGTCT GGACGATATA 2520 GCTAAGGGAT CATTTGTTTG CATTTATGCT GGTAAAATCC TGACTGATGA TTTCGCTGAC 2580 AAAGAAGGTC TAGAAATGGG TGACGAGTAT TTCGCTAACC TGGACCACAT TGAGAGCGTG 2640 GAGAACTTCA AGGAAGGCTA CGAGAGCGAG GCGCACTGCT CCGACAGCGA GGGCAGCGGC 2700 GTGGACGTGT CCAGGATGAA AATCCAGCCG TCCGCTTTGG TCTCCAGCGG CGCTGCGAGG 2760 AAAAAAGCTC AGAGCTCCAG CTCTTCGGAT GACAGCAACG ACGAAGAGGA GAAAGATTCA 2820 AAGAGTGAAG ATGAAAGCGA CAGCTCAGAC GACACCTTTG TGAAGGACAA CTACTACACC 2880 CCCAGCTCTG TGTGGAGGAG TTACACGACT CGCGGTCAGG CCAAGGGCAA CAAAGAAGGG 2940 AGTCAGGACA GTAAAGATGG ACTGAGTGTC TCAGCCAAAG GTCAGGATGA TGAGAAACCG 3000 CCCTCCATGC CAGAGGAGAC GGGGAAAAGC AAAGTGGCTT CCTGGTTAAC AAGCCAGGGC 3060 CTGAATCAAA TAAAGACGGA GCAATCAAAG AAACAGGACG TCATGACTCT ATCGGACAGC 3120 GATGATGTTC AGACGATTAG CTCCGGATCT GAAGACAACA AAGACAGAGA GAAAGCCACT 3180 CCGGGCGTGA CCAAGAAGCA GGTAGCGGTG AAATCCACCC GAGGCATCGC CCTGAAGAAC 3240 AGCCACAGTA TGATGGTGAA ACCGTCTGGG GGAGGAGTCG GGCCCAGCGT TCAGGGGAGC 3300 AAACCCGGCC ACCAGGGGCA GCCTGGAGGA GGGGCAGAAA ACGCTCCCAA AAACACCCGG 3360 CTGTTCTTCG ACGGCGAAGA GTCCTGCTAC ATCATCGACG CCAAGTTGGA GGGAAATCTG 3420 GGACGTTATC TCAATCACAG CTGCAGTCCT AACCTGTTCG TCCAGAACGT GTTTGTCGAC 3480 ACACACGACT TGAGATTCCC CTGGGTGGCG TTCTTCGCCA GCAAGCGGAT TCGGGCCGGC 3540 ACAGAACTGA CCTGGGATTA TAACTACGAG GTGGGAAGCG TTGAAGGCAA AGAGCTGCTG 3600 TGCTGCTGCG GATCCACAGA GTGCCGTGGG CGGCTGCTGT GA
3643Nucleotide Fasta Sequence
>ENSPFOP00000004463.2|Tudor|Poecilia formosa CTGCTGATGGACATAAAGTTGTGTCCCCTCCTCAGAATGGAGGTCGACGGCTGGGACCCCAGTCTGGAGGACGAGTTGGGAGTTTCACTGGATGACCTGAAGAAATGGATTGAGGAGGCCGTGGAGCAGAGCGAGGCTGTGAAGAAGAAAAAAGCCCAGCTGATAGAGCTCGAGGAATGGGTGGAACAGAAAGAGAAAGAAGAGGCGAAGACAGAGAAACTTCTCAACGATGCCAACCAGTCCGTTTTGGAGTGTGAGAAGCTAGTGAGGGCAGCGTATGAAAACAACGGCCTCGTCTACCGAGAGAGCAGCTCAGACGATGAAGGCGGCGGAGGAGGAGGGCTCCCCTCTGAAGTCATCGAGATTGATGACGATGATGACGATGACGTCATAGCTGTGGGATGTTCATCAGTGGTTCCTCCAAAGACACAAGCGCCATCTAAGGACCCAACATTAAACGAAGCCTCTGCAGTTCTGCAGAAAACCACCCAGCAGGTCCAGAAGTTGGTCCAAATAGTCACCAAGCCCTCCTCTGCCTCGCCTTTGATACGAACAGCAGTGCAGTCTGTAGTTCAGCCAGATCCTGCAGGAGTTCAGAGCACGACACCAGCTATATTTGTATCACAAGCTCCGTCTCATCAGACGATGACGCAGACGCAGCCAAACCCCAACATAAAAGAAGATGAGCTCAAAGTGGGGATGAACATCCTGGGAAAGAAACGCACCAAGACGTGGCATAAAGGCAACCTGGTGGCAATTAACCCTGTTGGAAACGGTGTGTTTAAGTACAAGGTGAGGTTTGATAAAGGCAAGAGTCTGCTGTCTGGGAACCATGTGGCGTTTGACTACAACCCCACCCTGGAGAGCCTGTACGTCGGGGCTCGTGTTGTCGCCAAGTACAAAGACGGAAACCTGGTGTGGCTGTACGCTGGAATCGTGGCAGAGATGCCAAACAACAAGAACCGGATGAGGTTTCTGATCTTCTTTGACGACGGCTACGCTTCATATGTGATCCTTCCTGAACTCTATCCAGTTTGCAGACCATTAAAGCGAACTTGGGAAGACATAGAGGATGCATCTTGTCGGGACTTCATCGAGGAGTACATCTCCGCCTATCCCAGCAGGCCGATGGTGCTCCTAAAGGTCGGCCAGATAATCAAGACGGAGTGGGAGGGGACCTGGTGGAAGAGCAAAGTGGAGGAGGTGGACAGCAGCTTGGTCAAGATCCTCTTTCTGGACGATAAGAGGAGCGAATGGATTTACAGAGGATCCACCAGGTTGGAGCCCATGTTCAATCTGAAACTGGCTTCAGCAAACACTCAAGAAAAGAAGCTAGCTGGCCACCAGAGGACAAGGCCAAACATGGGAGCACTAAGGAGTAAAGGCCCAGTCGTTCAGTACACTGGCGTCGAACACGTCGGAGTTTCTCCTGCCAAACCTCCTCAAACGACACAGAGTCAGCCGCCAGCGATGACTCTGATCCAGCACTCAAGAAATAAACATCAGATGGCAAAGAAGAGCACGTCTAATTTCATCCCTGGTGTCGGCGGGACGCACGCCTCCAAGATCCTGCAGGCTGCGTCCGCTAACGCCAGCAACCTCTCAGTTGGAAAGGTGCAGAGCACCCCGAACACGCCCACGTCCTCCTTCACGCCTCCGTATCAGAGACAGACGACCGCCCTGGCGCCTCCCCCTTCCATCGTCACGCACGCGATGGCCACCATCCCTCAGCAGCCGTCCTACAGAGCCCCGACGGACCGCATCTTCTACCTGGCTCACACCTGCCAGCCTGCATGTCTGAACCGCGTCCGACCAGCAAAGTCAGACCTGCACAGAGGAAAGAACCCCCTCCTCACTCCGCTGCTCTACGACTTCAGACGCATGACGGGACGACGCAAAGTCAACCGTAAAATGTCCTTCCACGTTATCTACAAGGCTCCGTGTGGACTTTGTCTGCGTAACATGGGGGAGATCCAGAACTACCTCTTCCAGACCCGCTGTGACTTTATATTCTTAGAGATGTTCTGCCTCGACCCGTACGTCCTGGTGGACCGGCCTTTCCAGCCGCAAAGGCCCTTCTATTACATTCCAGACATCACTAGTGGGAAGGAGGACATCCCTCTGTCCTGCGTCAATGAGATTGACACCACTCCACCACCTAACGTAAAATACAGCAAGGAGCGAATCCCTGAAGACGGAGTATTTATTAACACCAGTTCAGACTTCCTGGTCGGCTGTGAATGTACCGACGGCTGCAAAGACAAATCCAAATGTTCCTGCCACCAGCTGACCCTGCAGGCTTCAGGCTGCACACCTGGGGGGCAGATCAACCAGAGCGCCGGATATTCATACAAACGATTAGAGGAGTGCTTACCTACAGGCATCTATGAGTGCAACAAAAGGTGTAAATGTTGTGCTCAGATGTGCACCAACCGGCTGGTGCAGCACGGCCTGCAGGTCCGTCTGCAGCTCTTTAAGACCCAGAACAAAGGCTGGGGCATTCGCTGTCTGGACGATATAGCTAAGGGATCATTTGTTTGCATTTATGCTGGTAAAATCCTGACTGATGATTTCGCTGACAAAGAAGGTCTAGAAATGGGTGACGAGTATTTCGCTAACCTGGACCACATTGAGAGCGTGGAGAACTTCAAGGAAGGCTACGAGAGCGAGGCGCACTGCTCCGACAGCGAGGGCAGCGGCGTGGACGTGTCCAGGATGAAAATCCAGCCGTCCGCTTTGGTCTCCAGCGGCGCTGCGAGGAAAAAAGCTCAGAGCTCCAGCTCTTCGGATGACAGCAACGACGAAGAGGAGAAAGATTCAAAGAGTGAAGATGAAAGCGACAGCTCAGACGACACCTTTGTGAAGGACAACTACTACACCCCCAGCTCTGTGTGGAGGAGTTACACGACTCGCGGTCAGGCCAAGGGCAACAAAGAAGGGAGTCAGGACAGTAAAGATGGACTGAGTGTCTCAGCCAAAGGTCAGGATGATGAGAAACCGCCCTCCATGCCAGAGGAGACGGGGAAAAGCAAAGTGGCTTCCTGGTTAACAAGCCAGGGCCTGAATCAAATAAAGACGGAGCAATCAAAGAAACAGGACGTCATGACTCTATCGGACAGCGATGATGTTCAGACGATTAGCTCCGGATCTGAAGACAACAAAGACAGAGAGAAAGCCACTCCGGGCGTGACCAAGAAGCAGGTAGCGGTGAAATCCACCCGAGGCATCGCCCTGAAGAACAGCCACAGTATGATGGTGAAACCGTCTGGGGGAGGAGTCGGGCCCAGCGTTCAGGGGAGCAAACCCGGCCACCAGGGGCAGCCTGGAGGAGGGGCAGAAAACGCTCCCAAAAACACCCGGCTGTTCTTCGACGGCGAAGAGTCCTGCTACATCATCGACGCCAAGTTGGAGGGAAATCTGGGACGTTATCTCAATCACAGCTGCAGTCCTAACCTGTTCGTCCAGAACGTGTTTGTCGACACACACGACTTGAGATTCCCCTGGGTGGCGTTCTTCGCCAGCAAGCGGATTCGGGCCGGCACAGAACTGACCTGGGATTATAACTACGAGGTGGGAAGCGTTGAAGGCAAAGAGCTGCTGTGCTGCTGCGGATCCACAGAGTGCCGTGGGCGGCTGCTGTGA
|
Sequence Source |
Ensembl |
Orthology |
|
Created Date |
25-Jun-2016 |