Tag |
Content |
WERAM ID |
WERAM-Nol-0108 |
Ensembl Protein ID |
ENSNLEP00000012201.1 |
Gene Name |
SETDB1 |
Ensembl Information |
|
Status |
Unreviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
SUV39 |
1.90e-76 |
255.1 |
262 |
1265 |
|
Organism |
Nomascus leucogenys |
Domain Profile |
HMT SUV39
SUV39.txt 15 vrclddiakgsFvciyaGeiltddeaek 42 r + + + g+ v yaG + ++ ++++ ENSNLEP00000012201.1 262 SRVVAKYKDGNQVWLYAGIVAETPNVKN 289 578889999*********9999888765 PP SUV39.txt 1 vrLqvfktenkGwGvrclddiakgsFvciyaGeiltddeaekegleegdeyladldskesvenlkegyesdvplssdss........ 79 vrLq+fkt+nkGwG+rclddiakgsFvciyaG+iltdd+a+kegle+gdey+a+ld++esven+kegyesd+p+ssdss ENSNLEP00000012201.1 802 VRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDAPCSSDSSgvdlkdqe 888 79************************************************************************************* PP SUV39.txt 80 ....................................................................................... 79 ENSNLEP00000012201.1 889 dgnsgtedpeesnddssddnfckdedfstssvwrsyatrrqtrgqkenglsettskdshppdlgpphipvppsipvggcnppsseet 975 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSNLEP00000012201.1 976 pknkvaswlscnsvseggfadsdshssfktneggegraggsrmeaekaptsglgikdegdikqskkedpedrnklsvvtessrnygy 1062 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSNLEP00000012201.1 1063 npspvkpeglrrppsktsmhqsrrlmasaqsnpddvltlssstesegesgtsrkptagqtsatavdsddiqtissgsegddfedkkn 1149 *************************************************************************************** PP SUV39.txt 80 .............................................ntrqekdkeeseyiidakkegnvgrflnHscspNlfvqnvfv 121 ntrq++d+ees+yiidak egn+gr+lnHscspNlfvqnvfv ENSNLEP00000012201.1 1150 mtgpmkrqvavkstrgfalksthgiaikstnmasvdkgesapvrkNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFV 1236 *************************************************************************************** PP SUV39.txt 122 dthdlrfprvafFaskrikagtELtwdYg 150 dthdlrfp+vafFaskri+agtELtwdY+ ENSNLEP00000012201.1 1237 DTHDLRFPWVAFFASKRIRAGTELTWDYN 1265 ****************************7 PP
|
Protein Sequence (Fasta) | MSSLPGCIGL DAATATVESE EMAELQQAVV EELGISMEEL RHFIDEELEK MDCVQQRKKQ 60 LAELETWVIQ KESEVAHVDQ LFDDASRAVT NCESLVKDFY SKLGLQYRDS SSEDESSRPT 120 EIIEIPDEDD DVLSIDSGDA GSRTPKDQKL REAMAALRKS AQDVQKFMDA VNKKSSSQDL 180 HKGTLSQMSG ELSKDGDLIV SMRILGKKRT KTWHKGTLIA IQTVGPGKKY KVKFDNKGKS 240 LLSGNHIAYD YHPPADKLYV GSRVVAKYKD GNQVWLYAGI VAETPNVKNK LRFLIFFDDG 300 YASYVTQSEL YPICRPLKKT WEDIEDISCR DFIEEYVTAY PNRPMVLLKS GQLIKTEWEG 360 TWWKSRVEEV DGSLVRILFL DDKRCEWIYR GSTRLEPMFS MKTSSASALE KKQGQLRTRP 420 NMGAVRSKGP VVQYTQDLTG TGTQFKPVEL PQPTAPPAPP FPPAPPLSPQ AGDSDLESQL 480 AQSRKQVAKK STSFRPGSVG SGHSSPTSPA LSENVSGGKP GINQMYRSPL GSTASAPAPS 540 ALPAPPAPPA FHGMLERAPA EPSYRAPMEK LFYLPHVCSY TCLSRVRPMR NEQYRGKNPR 600 WPLLYDFRRM TARRRVNRKM GFHVIYKTPC GLCLRTMQEI ERYLFETGCD FLFLEMFCLD 660 PYVLVDRKFQ PYKPFYYILD ITYGKEDVPL SCVNEIDTTP PPQVAYSKER IPGKGVFINT 720 GLFFLVGCDC KDGCRDKSKC ACHQLTIQAT ACTPGGQINP NSGYQYKRLE ECLPTGVYEC 780 NKRCKCDPNM CTNRLVQHGL QVRLQLFKTQ NKGWGIRCLD DIAKGSFVCI YAGKILTDDF 840 ADKEGLEMGD EYFANLDHIE SVENFKEGYE SDAPCSSDSS GVDLKDQEDG NSGTEDPEES 900 NDDSSDDNFC KDEDFSTSSV WRSYATRRQT RGQKENGLSE TTSKDSHPPD LGPPHIPVPP 960 SIPVGGCNPP SSEETPKNKV ASWLSCNSVS EGGFADSDSH SSFKTNEGGE GRAGGSRMEA 1020 EKAPTSGLGI KDEGDIKQSK KEDPEDRNKL SVVTESSRNY GYNPSPVKPE GLRRPPSKTS 1080 MHQSRRLMAS AQSNPDDVLT LSSSTESEGE SGTSRKPTAG QTSATAVDSD DIQTISSGSE 1140 GDDFEDKKNM TGPMKRQVAV KSTRGFALKS THGIAIKSTN MASVDKGESA PVRKNTRQFY 1200 DGEESCYIID AKLEGNLGRY LNHSCSPNLF VQNVFVDTHD LRFPWVAFFA SKRIRAGTEL 1260 TWDYNYEVGS VEGKELLCCC GAIECRGRLL Protein Fasta Sequence
>ENSNLEP00000012201.1|SUV39|Nomascus leucogenys MSSLPGCIGLDAATATVESEEMAELQQAVVEELGISMEELRHFIDEELEKMDCVQQRKKQLAELETWVIQKESEVAHVDQLFDDASRAVTNCESLVKDFYSKLGLQYRDSSSEDESSRPTEIIEIPDEDDDVLSIDSGDAGSRTPKDQKLREAMAALRKSAQDVQKFMDAVNKKSSSQDLHKGTLSQMSGELSKDGDLIVSMRILGKKRTKTWHKGTLIAIQTVGPGKKYKVKFDNKGKSLLSGNHIAYDYHPPADKLYVGSRVVAKYKDGNQVWLYAGIVAETPNVKNKLRFLIFFDDGYASYVTQSELYPICRPLKKTWEDIEDISCRDFIEEYVTAYPNRPMVLLKSGQLIKTEWEGTWWKSRVEEVDGSLVRILFLDDKRCEWIYRGSTRLEPMFSMKTSSASALEKKQGQLRTRPNMGAVRSKGPVVQYTQDLTGTGTQFKPVELPQPTAPPAPPFPPAPPLSPQAGDSDLESQLAQSRKQVAKKSTSFRPGSVGSGHSSPTSPALSENVSGGKPGINQMYRSPLGSTASAPAPSALPAPPAPPAFHGMLERAPAEPSYRAPMEKLFYLPHVCSYTCLSRVRPMRNEQYRGKNPRWPLLYDFRRMTARRRVNRKMGFHVIYKTPCGLCLRTMQEIERYLFETGCDFLFLEMFCLDPYVLVDRKFQPYKPFYYILDITYGKEDVPLSCVNEIDTTPPPQVAYSKERIPGKGVFINTGLFFLVGCDCKDGCRDKSKCACHQLTIQATACTPGGQINPNSGYQYKRLEECLPTGVYECNKRCKCDPNMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDAPCSSDSSGVDLKDQEDGNSGTEDPEESNDDSSDDNFCKDEDFSTSSVWRSYATRRQTRGQKENGLSETTSKDSHPPDLGPPHIPVPPSIPVGGCNPPSSEETPKNKVASWLSCNSVSEGGFADSDSHSSFKTNEGGEGRAGGSRMEAEKAPTSGLGIKDEGDIKQSKKEDPEDRNKLSVVTESSRNYGYNPSPVKPEGLRRPPSKTSMHQSRRLMASAQSNPDDVLTLSSSTESEGESGTSRKPTAGQTSATAVDSDDIQTISSGSEGDDFEDKKNMTGPMKRQVAVKSTRGFALKSTHGIAIKSTNMASVDKGESAPVRKNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
|
Nucleotide Sequence (Fasta) | GGCACTGAAG GTTTGCTTCC GGGCGTTTCT TTTGCTTCCC CTTCCCTCCT TCACGCTTCC 60 TCCCCTCCCC CTCCTCCCTT ATCCCTTCGC TTTCGCTCTT TTCCGTCGAG GCCGACCCCT 120 GAGTTGTGAG TCTGGGGTCT GGTTGGTGAA AAAGAGCCCT TAAAGCTGGA AGACGGGAGA 180 GGACAAAAGC ATGTCTTCCC TTCCTGGGTG CATTGGTTTG GATGCAGCAA CAGCTACAGT 240 GGAGTCTGAA GAGATGGCAG AGCTGCAACA GGCAGTGGTT GAGGAACTGG GTATCTCTAT 300 GGAGGAACTT CGGCATTTCA TCGATGAGGA ACTGGAGAAG ATGGATTGTG TACAACAACG 360 CAAGAAGCAG CTAGCAGAGT TAGAGACATG GGTAATACAG AAAGAATCTG AGGTGGCTCA 420 CGTTGACCAG CTCTTTGATG ATGCATCCAG GGCAGTGACT AATTGTGAGT CTTTGGTGAA 480 GGACTTCTAC TCCAAGCTGG GACTACAATA CCGGGACAGT AGCTCTGAGG ATGAATCTTC 540 CCGGCCTACA GAAATAATTG AGATTCCTGA TGAAGATGAT GATGTCCTCA GTATTGATTC 600 AGGTGATGCT GGGAGCAGAA CTCCAAAAGA CCAGAAGCTC CGTGAAGCCA TGGCTGCCTT 660 AAGAAAGTCA GCCCAAGATG TTCAGAAGTT CATGGATGCT GTCAACAAGA AGAGCAGTTC 720 GCAGGATCTG CATAAAGGAA CCTTGAGTCA GATGTCTGGA GAACTAAGCA AAGATGGTGA 780 CCTGATAGTC AGCATGCGAA TTCTGGGCAA GAAGAGAACT AAGACTTGGC ACAAAGGCAC 840 CCTTATTGCC ATCCAGACAG TTGGGCCAGG GAAGAAATAC AAGGTGAAAT TTGACAACAA 900 AGGAAAGAGT CTACTGTCGG GGAACCATAT TGCCTATGAT TACCACCCTC CTGCTGACAA 960 GCTGTATGTG GGCAGTCGGG TGGTCGCCAA ATACAAAGAT GGGAATCAGG TCTGGCTCTA 1020 TGCTGGCATT GTAGCTGAGA CACCAAACGT CAAAAACAAG CTCAGGTTTC TCATTTTCTT 1080 TGATGATGGC TATGCTTCCT ATGTCACACA GTCAGAACTG TATCCCATTT GCCGGCCACT 1140 GAAAAAGACT TGGGAAGACA TAGAAGACAT CTCCTGCCGT GACTTCATAG AGGAGTATGT 1200 CACTGCCTAC CCCAACCGCC CCATGGTACT GCTCAAGAGT GGCCAGCTTA TCAAGACTGA 1260 GTGGGAAGGC ACGTGGTGGA AGTCCCGAGT TGAGGAGGTG GATGGCAGCC TAGTCAGGAT 1320 CCTCTTCCTG GATGACAAAA GATGTGAGTG GATCTATCGA GGCTCTACAC GGCTGGAGCC 1380 CATGTTCAGC ATGAAAACAT CCTCAGCCTC TGCACTGGAG AAGAAGCAAG GACAACTCAG 1440 GACACGTCCA AATATGGGTG CTGTGAGGAG CAAAGGCCCT GTTGTCCAAT ACACACAGGA 1500 TCTGACTGGT ACTGGAACCC AGTTCAAGCC AGTGGAACTC CCACAGCCTA CAGCTCCACC 1560 TGCCCCACCT TTCCCACCTG CTCCACCTCT ATCCCCCCAA GCAGGTGACA GTGACTTGGA 1620 AAGCCAGCTT GCCCAGTCAC GGAAGCAGGT AGCCAAAAAG AGCACGTCCT TTCGACCAGG 1680 ATCTGTGGGC TCTGGTCATT CCTCCCCTAC ATCTCCTGCA CTCAGTGAAA ATGTCTCTGG 1740 TGGGAAACCT GGGATCAACC AGATGTATAG ATCACCTTTA GGCTCCACAG CCTCTGCCCC 1800 AGCGCCTTCA GCACTCCCAG CCCCTCCAGC ACCCCCAGCC TTCCATGGCA TGCTGGAGCG 1860 GGCCCCAGCA GAGCCCTCCT ACCGTGCTCC CATGGAGAAG CTTTTCTACT TACCTCATGT 1920 CTGCAGCTAT ACCTGTCTGT CTCGAGTCAG ACCTATGAGG AATGAGCAGT ACCGGGGCAA 1980 GAACCCTCGC TGGCCCTTAC TGTATGACTT CCGGCGGATG ACAGCCCGGC GTCGAGTTAA 2040 CCGCAAGATG GGCTTTCATG TTATCTATAA AACACCTTGT GGTCTCTGCC TTCGGACAAT 2100 GCAGGAGATT GAACGCTACC TTTTCGAGAC TGGCTGTGAC TTCCTCTTCC TGGAGATGTT 2160 CTGTTTGGAT CCATATGTTC TTGTGGACCG AAAGTTTCAG CCCTATAAGC CTTTTTACTA 2220 TATTTTGGAC ATCACTTATG GGAAGGAAGA TGTTCCCCTA TCCTGTGTCA ATGAGATTGA 2280 CACAACCCCT CCACCCCAGG TGGCCTACAG CAAGGAACGT ATCCCGGGCA AGGGTGTTTT 2340 CATTAACACA GGTCTGTTTT TTCTGGTTGG CTGTGACTGC AAGGATGGGT GTCGGGACAA 2400 GTCCAAGTGT GCCTGCCATC AACTAACTAT CCAGGCTACA GCCTGTACCC CAGGAGGCCA 2460 AATCAACCCT AACTCTGGCT ACCAGTACAA GAGACTAGAA GAGTGTCTAC CCACAGGGGT 2520 ATATGAGTGT AACAAACGCT GCAAATGTGA CCCAAACATG TGCACAAACC GGTTGGTGCA 2580 ACATGGACTA CAAGTTCGGC TACAGCTATT CAAGACACAG AACAAGGGCT GGGGTATCCG 2640 CTGCTTGGAT GACATTGCCA AAGGCTCTTT TGTCTGTATT TATGCAGGTA AAATCCTGAC 2700 AGATGACTTT GCAGACAAGG AGGGTCTGGA AATGGGTGAT GAGTACTTTG CAAATCTGGA 2760 CCATATCGAG AGCGTGGAGA ACTTCAAAGA AGGATATGAG AGTGATGCCC CCTGTTCCTC 2820 TGACAGCAGT GGTGTAGACT TGAAGGACCA GGAAGATGGC AACAGCGGTA CAGAGGACCC 2880 TGAAGAGTCC AATGATGATA GCTCAGATGA TAACTTCTGT AAGGATGAGG ACTTCAGCAC 2940 CAGTTCAGTG TGGCGGAGCT ATGCTACCCG GAGGCAGACC CGGGGCCAGA AAGAGAATGG 3000 ACTCTCTGAG ACAACTTCCA AGGACTCCCA CCCCCCAGAT CTTGGACCCC CACATATTCC 3060 TGTTCCTCCC TCAATCCCTG TAGGTGGCTG CAATCCACCT TCCTCCGAAG AGACACCCAA 3120 GAACAAGGTG GCCTCATGGT TGAGCTGCAA TAGTGTCAGT GAAGGTGGTT TTGCTGACTC 3180 TGATAGCCAT TCATCCTTCA AGACTAATGA AGGTGGGGAG GGCCGGGCTG GGGGAAGCCG 3240 AATGGAGGCT GAGAAGGCCC CCACCTCAGG ACTAGGCATC AAGGATGAGG GAGACATCAA 3300 ACAGTCCAAG AAAGAGGACC CTGAGGACCG AAACAAGCTG TCAGTAGTTA CTGAAAGCTC 3360 TCGAAATTAC GGTTACAATC CTTCTCCTGT GAAGCCTGAA GGACTTCGCC GCCCACCTAG 3420 TAAGACTAGT ATGCATCAAA GCCGAAGACT CATGGCTTCT GCTCAGTCAA ACCCTGATGA 3480 TGTCCTGACA CTGTCCAGCA GCACAGAAAG TGAGGGGGAA AGTGGGACCA GCCGAAAGCC 3540 CACTGCTGGT CAGACTTCGG CTACAGCGGT TGACAGTGAT GATATCCAGA CCATCTCCTC 3600 TGGCTCTGAA GGGGATGACT TTGAGGACAA GAAGAACATG ACTGGTCCAA TGAAGCGTCA 3660 AGTGGCAGTA AAATCAACCC GAGGCTTTGC TCTTAAATCA ACCCATGGGA TTGCAATTAA 3720 ATCAACCAAC ATGGCCTCTG TGGACAAGGG GGAGAGCGCA CCTGTTCGTA AGAACACACG 3780 CCAATTTTAC GATGGCGAGG AGTCTTGCTA CATCATCGAT GCCAAGCTTG AAGGCAACCT 3840 GGGCCGCTAC CTCAACCACA GTTGCAGCCC CAACCTGTTT GTCCAGAATG TCTTCGTGGA 3900 TACCCATGAT CTTCGCTTCC CCTGGGTGGC CTTCTTTGCC AGCAAAAGAA TCCGGGCCGG 3960 GACAGAACTT ACTTGGGACT ACAACTACGA GGTGGGCAGT GTGGAAGGCA AGGAGCTGCT 4020 CTGTTGCTGT GGGGCCATTG AATGCAGAGG CCGTCTTCTT TAG
4064Nucleotide Fasta Sequence
>ENSNLEP00000012201.1|SUV39|Nomascus leucogenys GGCACTGAAGGTTTGCTTCCGGGCGTTTCTTTTGCTTCCCCTTCCCTCCTTCACGCTTCCTCCCCTCCCCCTCCTCCCTTATCCCTTCGCTTTCGCTCTTTTCCGTCGAGGCCGACCCCTGAGTTGTGAGTCTGGGGTCTGGTTGGTGAAAAAGAGCCCTTAAAGCTGGAAGACGGGAGAGGACAAAAGCATGTCTTCCCTTCCTGGGTGCATTGGTTTGGATGCAGCAACAGCTACAGTGGAGTCTGAAGAGATGGCAGAGCTGCAACAGGCAGTGGTTGAGGAACTGGGTATCTCTATGGAGGAACTTCGGCATTTCATCGATGAGGAACTGGAGAAGATGGATTGTGTACAACAACGCAAGAAGCAGCTAGCAGAGTTAGAGACATGGGTAATACAGAAAGAATCTGAGGTGGCTCACGTTGACCAGCTCTTTGATGATGCATCCAGGGCAGTGACTAATTGTGAGTCTTTGGTGAAGGACTTCTACTCCAAGCTGGGACTACAATACCGGGACAGTAGCTCTGAGGATGAATCTTCCCGGCCTACAGAAATAATTGAGATTCCTGATGAAGATGATGATGTCCTCAGTATTGATTCAGGTGATGCTGGGAGCAGAACTCCAAAAGACCAGAAGCTCCGTGAAGCCATGGCTGCCTTAAGAAAGTCAGCCCAAGATGTTCAGAAGTTCATGGATGCTGTCAACAAGAAGAGCAGTTCGCAGGATCTGCATAAAGGAACCTTGAGTCAGATGTCTGGAGAACTAAGCAAAGATGGTGACCTGATAGTCAGCATGCGAATTCTGGGCAAGAAGAGAACTAAGACTTGGCACAAAGGCACCCTTATTGCCATCCAGACAGTTGGGCCAGGGAAGAAATACAAGGTGAAATTTGACAACAAAGGAAAGAGTCTACTGTCGGGGAACCATATTGCCTATGATTACCACCCTCCTGCTGACAAGCTGTATGTGGGCAGTCGGGTGGTCGCCAAATACAAAGATGGGAATCAGGTCTGGCTCTATGCTGGCATTGTAGCTGAGACACCAAACGTCAAAAACAAGCTCAGGTTTCTCATTTTCTTTGATGATGGCTATGCTTCCTATGTCACACAGTCAGAACTGTATCCCATTTGCCGGCCACTGAAAAAGACTTGGGAAGACATAGAAGACATCTCCTGCCGTGACTTCATAGAGGAGTATGTCACTGCCTACCCCAACCGCCCCATGGTACTGCTCAAGAGTGGCCAGCTTATCAAGACTGAGTGGGAAGGCACGTGGTGGAAGTCCCGAGTTGAGGAGGTGGATGGCAGCCTAGTCAGGATCCTCTTCCTGGATGACAAAAGATGTGAGTGGATCTATCGAGGCTCTACACGGCTGGAGCCCATGTTCAGCATGAAAACATCCTCAGCCTCTGCACTGGAGAAGAAGCAAGGACAACTCAGGACACGTCCAAATATGGGTGCTGTGAGGAGCAAAGGCCCTGTTGTCCAATACACACAGGATCTGACTGGTACTGGAACCCAGTTCAAGCCAGTGGAACTCCCACAGCCTACAGCTCCACCTGCCCCACCTTTCCCACCTGCTCCACCTCTATCCCCCCAAGCAGGTGACAGTGACTTGGAAAGCCAGCTTGCCCAGTCACGGAAGCAGGTAGCCAAAAAGAGCACGTCCTTTCGACCAGGATCTGTGGGCTCTGGTCATTCCTCCCCTACATCTCCTGCACTCAGTGAAAATGTCTCTGGTGGGAAACCTGGGATCAACCAGATGTATAGATCACCTTTAGGCTCCACAGCCTCTGCCCCAGCGCCTTCAGCACTCCCAGCCCCTCCAGCACCCCCAGCCTTCCATGGCATGCTGGAGCGGGCCCCAGCAGAGCCCTCCTACCGTGCTCCCATGGAGAAGCTTTTCTACTTACCTCATGTCTGCAGCTATACCTGTCTGTCTCGAGTCAGACCTATGAGGAATGAGCAGTACCGGGGCAAGAACCCTCGCTGGCCCTTACTGTATGACTTCCGGCGGATGACAGCCCGGCGTCGAGTTAACCGCAAGATGGGCTTTCATGTTATCTATAAAACACCTTGTGGTCTCTGCCTTCGGACAATGCAGGAGATTGAACGCTACCTTTTCGAGACTGGCTGTGACTTCCTCTTCCTGGAGATGTTCTGTTTGGATCCATATGTTCTTGTGGACCGAAAGTTTCAGCCCTATAAGCCTTTTTACTATATTTTGGACATCACTTATGGGAAGGAAGATGTTCCCCTATCCTGTGTCAATGAGATTGACACAACCCCTCCACCCCAGGTGGCCTACAGCAAGGAACGTATCCCGGGCAAGGGTGTTTTCATTAACACAGGTCTGTTTTTTCTGGTTGGCTGTGACTGCAAGGATGGGTGTCGGGACAAGTCCAAGTGTGCCTGCCATCAACTAACTATCCAGGCTACAGCCTGTACCCCAGGAGGCCAAATCAACCCTAACTCTGGCTACCAGTACAAGAGACTAGAAGAGTGTCTACCCACAGGGGTATATGAGTGTAACAAACGCTGCAAATGTGACCCAAACATGTGCACAAACCGGTTGGTGCAACATGGACTACAAGTTCGGCTACAGCTATTCAAGACACAGAACAAGGGCTGGGGTATCCGCTGCTTGGATGACATTGCCAAAGGCTCTTTTGTCTGTATTTATGCAGGTAAAATCCTGACAGATGACTTTGCAGACAAGGAGGGTCTGGAAATGGGTGATGAGTACTTTGCAAATCTGGACCATATCGAGAGCGTGGAGAACTTCAAAGAAGGATATGAGAGTGATGCCCCCTGTTCCTCTGACAGCAGTGGTGTAGACTTGAAGGACCAGGAAGATGGCAACAGCGGTACAGAGGACCCTGAAGAGTCCAATGATGATAGCTCAGATGATAACTTCTGTAAGGATGAGGACTTCAGCACCAGTTCAGTGTGGCGGAGCTATGCTACCCGGAGGCAGACCCGGGGCCAGAAAGAGAATGGACTCTCTGAGACAACTTCCAAGGACTCCCACCCCCCAGATCTTGGACCCCCACATATTCCTGTTCCTCCCTCAATCCCTGTAGGTGGCTGCAATCCACCTTCCTCCGAAGAGACACCCAAGAACAAGGTGGCCTCATGGTTGAGCTGCAATAGTGTCAGTGAAGGTGGTTTTGCTGACTCTGATAGCCATTCATCCTTCAAGACTAATGAAGGTGGGGAGGGCCGGGCTGGGGGAAGCCGAATGGAGGCTGAGAAGGCCCCCACCTCAGGACTAGGCATCAAGGATGAGGGAGACATCAAACAGTCCAAGAAAGAGGACCCTGAGGACCGAAACAAGCTGTCAGTAGTTACTGAAAGCTCTCGAAATTACGGTTACAATCCTTCTCCTGTGAAGCCTGAAGGACTTCGCCGCCCACCTAGTAAGACTAGTATGCATCAAAGCCGAAGACTCATGGCTTCTGCTCAGTCAAACCCTGATGATGTCCTGACACTGTCCAGCAGCACAGAAAGTGAGGGGGAAAGTGGGACCAGCCGAAAGCCCACTGCTGGTCAGACTTCGGCTACAGCGGTTGACAGTGATGATATCCAGACCATCTCCTCTGGCTCTGAAGGGGATGACTTTGAGGACAAGAAGAACATGACTGGTCCAATGAAGCGTCAAGTGGCAGTAAAATCAACCCGAGGCTTTGCTCTTAAATCAACCCATGGGATTGCAATTAAATCAACCAACATGGCCTCTGTGGACAAGGGGGAGAGCGCACCTGTTCGTAAGAACACACGCCAATTTTACGATGGCGAGGAGTCTTGCTACATCATCGATGCCAAGCTTGAAGGCAACCTGGGCCGCTACCTCAACCACAGTTGCAGCCCCAACCTGTTTGTCCAGAATGTCTTCGTGGATACCCATGATCTTCGCTTCCCCTGGGTGGCCTTCTTTGCCAGCAAAAGAATCCGGGCCGGGACAGAACTTACTTGGGACTACAACTACGAGGTGGGCAGTGTGGAAGGCAAGGAGCTGCTCTGTTGCTGTGGGGCCATTGAATGCAGAGGCCGTCTTCTTTAG
|
Sequence Source |
Ensembl |
Orthology |
|
Created Date |
25-Jun-2016 |