Tag |
Content |
WERAM ID |
WERAM-Mae-0006 |
Ensembl Protein ID |
ENSMEUP00000000505.1 |
Gene Name |
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Ensembl Information |
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Status |
Unreviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
SUV39 |
1.10e-75 |
252.3 |
778 |
1231 |
|
Organism |
Macropus eugenii |
Domain Profile |
HMT SUV39
SUV39.txt 1 vrLqvfktenkGwGvrclddiakgsFvciyaGeiltddeaekegleegdeyladldskesvenlkegyesdvplssdss........ 79 vrLq+fkt+nkGwG+rclddia+gsFvciyaG+iltdd+a+kegle+gdey+a+ld++esven+kegyesdvp+ss++s ENSMEUP00000000505.1 778 VRLQLFKTQNKGWGIRCLDDIARGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDVPCSSNHSdvdlkdqe 864 79************************************************************************************* PP SUV39.txt 80 ....................................................................................... 79 ENSMEUP00000000505.1 865 dgnsgtenlevsnddssddnfckdedfstssvwrsyatrrqtrgqkenelsetaskdsrlpdsgpshlsappasiggcklppssedt 951 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSMEUP00000000505.1 952 pknkvatwlscnsvsdgtfpdsdshssfrtseggngraggghgyaekpsisgvgvkeegyvkppkkgsensrnfgynpsplkikgik 1038 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSMEUP00000000505.1 1039 cppsktnmhqarrhmrpaqaipddvltlssstesegesersqklmagqaptpaaysddiqtissgsdgedfedkknmhagpikhqva 1125 *************************************************************************************** PP SUV39.txt 80 ...................................ntrqekdkeeseyiidakkegnvgrflnHscspNlfvqnvfvdthdlrfprv 131 ntrq++d+ees+yiidak egn+gr+lnHscspNlfvqnvfvdthdlrfp+v ENSMEUP00000000505.1 1126 vkstrgfalksthgiaikstnmastdkgesapvhkNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWV 1212 *************************************************************************************** PP SUV39.txt 132 afFaskrikagtELtwdYg 150 afFaskri+agtELtwdY+ ENSMEUP00000000505.1 1213 AFFASKRIRAGTELTWDYN 1231 ******************7 PP
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Protein Sequence (Fasta) | MAPFPGCFGL GAAAAAAMEA QEIAELQQAV VEELGISMEE LRQFVDEELE KMDCVKLRQK 60 QLAELESRVV QKESEVAHVD ELFQEASRAV TNCESLVKDF YSTLGLQYPE SSSEDEASRP 120 TEIIEIPDED EDDVLSVHSL QETMAALRKS TQDVQKFMDA VSKTSSQDLN RGDLGQAPVE 180 LSKDGDLVVN MRILGKKRTK TWHKGTLIAI QTVGTGRKFK VKFDNKRKSL LFGNHIAYDY 240 HPSADKLHVG SRVVATYKDR NQVWLYAGIV AEIPKVKNKL RFLIFFDDGY ASYVTQSELY 300 LVCRPLKNVW EDIEDVSCRD FIEEYVTAYP NRPMVLLKSG QLIKTEWEGT WWKSRVEQVD 360 GSLVKILFLD DKRCEWIYRG STRLEPMFSM KTSTASTLEK KQGGQLQIHS NMGDVKSKGP 420 VVQYTQDLTG TGTQFKPLEL PHTTSLPAPT LSPQVTDLES LKSQLTQERK QVAKKSTSFR 480 LGSVSSGHSF PMSPGFNEAV PGGKSAVDQK VRLSLGSAAL GPPPAFHGIL EWASAKPSNQ 540 SLREKLFYLP HACSHTCLTR VRPVNNLQYR GKNPLLVPQL YDFCRMMARR RVNRKMAFHI 600 IYKTPCGLCL RTMNEIERYL FETTCDFLFL EMFCLDIYVL VDRKFQPYKP FYYILDITHG 660 QEDVPLSCVN EIDTTPPPQV AYSKERIPGK GVFINTSWEF LVGCDCKDGC RDKSKCACHQ 720 LTIQATACTP GGQINPNSGY QHKRLDECLP TGVYECNKRC KCNLNMCTNR LVQHGLQVRL 780 QLFKTQNKGW GIRCLDDIAR GSFVCIYAGK ILTDDFADKE GLEMGDEYFA NLDHIESVEN 840 FKEGYESDVP CSSNHSDVDL KDQEDGNSGT ENLEVSNDDS SDDNFCKDED FSTSSVWRSY 900 ATRRQTRGQK ENELSETASK DSRLPDSGPS HLSAPPASIG GCKLPPSSED TPKNKVATWL 960 SCNSVSDGTF PDSDSHSSFR TSEGGNGRAG GGHGYAEKPS ISGVGVKEEG YVKPPKKGSE 1020 NSRNFGYNPS PLKIKGIKCP PSKTNMHQAR RHMRPAQAIP DDVLTLSSST ESEGESERSQ 1080 KLMAGQAPTP AAYSDDIQTI SSGSDGEDFE DKKNMHAGPI KHQVAVKSTR GFALKSTHGI 1140 AIKSTNMAST DKGESAPVHK NTRQFYDGEE SCYIIDAKLE GNLGRYLNHS CSPNLFVQNV 1200 FVDTHDLRFP WVAFFASKRI RAGTELTWDY NYEVGSVEGK ELLCCCGAIE CRGRLL 1256Protein Fasta Sequence
>ENSMEUP00000000505.1|SUV39|Macropus eugenii MAPFPGCFGLGAAAAAAMEAQEIAELQQAVVEELGISMEELRQFVDEELEKMDCVKLRQKQLAELESRVVQKESEVAHVDELFQEASRAVTNCESLVKDFYSTLGLQYPESSSEDEASRPTEIIEIPDEDEDDVLSVHSLQETMAALRKSTQDVQKFMDAVSKTSSQDLNRGDLGQAPVELSKDGDLVVNMRILGKKRTKTWHKGTLIAIQTVGTGRKFKVKFDNKRKSLLFGNHIAYDYHPSADKLHVGSRVVATYKDRNQVWLYAGIVAEIPKVKNKLRFLIFFDDGYASYVTQSELYLVCRPLKNVWEDIEDVSCRDFIEEYVTAYPNRPMVLLKSGQLIKTEWEGTWWKSRVEQVDGSLVKILFLDDKRCEWIYRGSTRLEPMFSMKTSTASTLEKKQGGQLQIHSNMGDVKSKGPVVQYTQDLTGTGTQFKPLELPHTTSLPAPTLSPQVTDLESLKSQLTQERKQVAKKSTSFRLGSVSSGHSFPMSPGFNEAVPGGKSAVDQKVRLSLGSAALGPPPAFHGILEWASAKPSNQSLREKLFYLPHACSHTCLTRVRPVNNLQYRGKNPLLVPQLYDFCRMMARRRVNRKMAFHIIYKTPCGLCLRTMNEIERYLFETTCDFLFLEMFCLDIYVLVDRKFQPYKPFYYILDITHGQEDVPLSCVNEIDTTPPPQVAYSKERIPGKGVFINTSWEFLVGCDCKDGCRDKSKCACHQLTIQATACTPGGQINPNSGYQHKRLDECLPTGVYECNKRCKCNLNMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIARGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDVPCSSNHSDVDLKDQEDGNSGTENLEVSNDDSSDDNFCKDEDFSTSSVWRSYATRRQTRGQKENELSETASKDSRLPDSGPSHLSAPPASIGGCKLPPSSEDTPKNKVATWLSCNSVSDGTFPDSDSHSSFRTSEGGNGRAGGGHGYAEKPSISGVGVKEEGYVKPPKKGSENSRNFGYNPSPLKIKGIKCPPSKTNMHQARRHMRPAQAIPDDVLTLSSSTESEGESERSQKLMAGQAPTPAAYSDDIQTISSGSDGEDFEDKKNMHAGPIKHQVAVKSTRGFALKSTHGIAIKSTNMASTDKGESAPVHKNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
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Nucleotide Sequence (Fasta) | ATGGCTCCCT TTCCTGGGTG TTTTGGTTTA GGCGCTGCTG CAGCAGCTGC GATGGAAGCT 60 CAGGAGATTG CGGAGCTGCA GCAGGCAGTG GTGGAGGAGC TGGGCATCTC CATGGAAGAA 120 CTTCGACAGT TTGTTGATGA GGAACTGGAA AAGATGGACT GTGTGAAGCT GCGCCAGAAG 180 CAGCTAGCCG AGCTGGAGAG CCGCGTGGTG CAGAAGGAGT CGGAGGTAGC CCACGTGGAC 240 GAGCTCTTTC AAGAAGCATC CAGGGCAGTG ACCAACTGCG AATCTCTGGT GAAGGATTTC 300 TACTCCACAC TGGGGCTGCA GTATCCGGAG AGCAGTTCCG AAGATGAAGC CTCCAGACCC 360 ACAGAAATCA TTGAGATTCC TGATGAGGAT GAGGATGATG TCCTCAGTGT TCATTCACTC 420 CAAGAAACTA TGGCTGCCCT GAGGAAGTCA ACCCAAGATG TCCAAAAGTT CATGGATGCT 480 GTCAGCAAGA CTAGTTCCCA GGACCTGAAC AGAGGAGACT TGGGTCAGGC ACCTGTTGAG 540 TTGAGTAAGG ATGGTGACCT AGTTGTCAAC ATGAGAATCC TGGGCAAGAA AAGGACCAAG 600 ACATGGCACA AGGGGACCCT CATTGCCATC CAGACAGTTG GAACTGGGAG GAAATTCAAA 660 GTCAAATTTG ACAACAAAAG GAAGAGCCTA TTGTTTGGGA ACCATATTGC CTATGACTAT 720 CACCCTTCAG CAGACAAGTT ACATGTAGGC AGCCGTGTGG TGGCCACGTA TAAGGATAGG 780 AATCAGGTGT GGCTCTATGC AGGTATTGTG GCTGAGATTC CGAAAGTCAA AAATAAGCTC 840 AGGTTCCTCA TCTTCTTTGA TGATGGCTAT GCATCCTATG TCACACAGTC TGAACTCTAT 900 CTCGTTTGCA GACCACTGAA GAATGTGTGG GAGGACATCG AGGACGTTTC ATGCCGAGAC 960 TTCATCGAAG AATATGTCAC TGCCTACCCC AACCGTCCCA TGGTGCTACT TAAGAGTGGG 1020 CAGCTCATAA AGACTGAATG GGAAGGCACT TGGTGGAAAT CCCGGGTGGA ACAGGTGGAT 1080 GGGAGTCTTG TCAAGATCCT GTTCCTGGAT GACAAGAGGT GCGAATGGAT CTATCGAGGT 1140 TCTACCCGAC TGGAGCCCAT GTTCAGCATG AAGACATCCA CAGCTTCCAC ACTGGAGAAG 1200 AAACAGGGGG GGCAGCTCCA GATACATTCA AACATGGGTG ATGTGAAGAG CAAAGGTCCT 1260 GTAGTACAGT ATACTCAAGA TCTCACTGGT ACTGGAACCC AGTTCAAGCC CCTAGAACTA 1320 CCTCATACTA CATCCTTGCC TGCCCCAACC CTGTCTCCTC AAGTGACCGA TTTGGAAAGT 1380 CTGAAGAGTC AGCTTACCCA GGAACGGAAG CAAGTGGCCA AAAAGAGCAC ATCTTTCCGA 1440 CTAGGTTCTG TGAGTTCTGG TCATTCATTC CCTATGTCTC CTGGATTTAA TGAGGCAGTC 1500 CCTGGTGGAA AGTCTGCAGT GGACCAGAAA GTCAGATTAT CACTAGGCTC TGCAGCCCTT 1560 GGCCCACCTC CAGCTTTTCA TGGCATACTG GAGTGGGCTT CAGCCAAACC CTCCAATCAG 1620 TCCCTGAGGG AGAAGCTCTT CTACTTGCCT CATGCCTGTA GTCACACCTG CCTCACTCGA 1680 GTGAGGCCAG TGAATAATTT GCAGTACCGG GGCAAGAATC CCCTCTTGGT TCCTCAGCTC 1740 TATGATTTCT GTCGTATGAT GGCCCGGCGC CGGGTCAACC GCAAGATGGC CTTTCACATT 1800 ATCTATAAGA CACCCTGCGG CCTCTGCCTG AGGACAATGA ACGAGATTGA ACGCTATCTC 1860 TTTGAGACAA CATGCGATTT CCTTTTCCTG GAGATGTTCT GTTTGGACAT ATATGTTCTT 1920 GTGGATCGGA AATTCCAGCC CTATAAGCCT TTTTACTACA TCCTGGACAT CACCCATGGC 1980 CAGGAGGATG TTCCTCTGTC ATGTGTCAAT GAGATTGATA CCACCCCCCC ACCCCAGGTG 2040 GCCTATAGCA AAGAGAGAAT CCCAGGGAAG GGCGTCTTCA TCAACACTAG CTGGGAGTTT 2100 CTTGTTGGCT GCGACTGCAA AGATGGTTGT CGAGACAAGT CTAAATGTGC TTGCCACCAG 2160 CTTACCATCC AGGCAACAGC CTGCACCCCA GGAGGCCAGA TCAACCCTAA CTCTGGCTAC 2220 CAGCATAAGA GATTAGATGA GTGCCTACCC ACAGGGGTAT ATGAATGTAA CAAACGCTGC 2280 AAATGTAACC TGAACATGTG CACAAACCGC TTGGTGCAGC ATGGGCTACA GGTTCGCCTG 2340 CAACTCTTCA AGACACAGAA CAAGGGCTGG GGCATCCGGT GTTTGGATGA TATCGCCAGA 2400 GGTTCCTTTG TCTGTATCTA TGCAGGCAAA ATTCTGACTG ATGACTTTGC AGACAAAGAG 2460 GGTCTAGAAA TGGGGGATGA GTACTTTGCA AACCTGGACC ATATTGAAAG TGTAGAGAAC 2520 TTTAAGGAAG GCTATGAAAG TGATGTCCCC TGCTCCTCCA ACCACAGTGA TGTGGACTTG 2580 AAAGACCAAG AGGATGGCAA CAGTGGCACT GAGAATCTTG AAGTGTCTAA TGACGACAGT 2640 TCAGATGATA ACTTTTGCAA GGATGAGGAC TTTAGTACCA GTTCAGTGTG GCGTAGTTAT 2700 GCCACCCGGC GGCAGACAAG AGGCCAGAAA GAGAATGAGT TATCTGAGAC TGCCTCCAAA 2760 GACTCCCGCC TCCCAGACTC CGGCCCCTCT CATCTTTCTG CCCCTCCAGC TTCCATAGGG 2820 GGATGTAAAC TACCTCCTTC CTCCGAGGAC ACACCCAAGA ACAAAGTGGC CACATGGCTA 2880 AGTTGCAACA GTGTCAGTGA TGGCACCTTT CCTGACTCAG ATAGCCACTC CTCCTTCAGG 2940 ACCAGCGAGG GTGGAAATGG GAGGGCTGGG GGAGGCCATG GGTATGCAGA GAAGCCCTCC 3000 ATCTCAGGGG TAGGGGTCAA AGAAGAGGGG TATGTTAAGC CACCCAAGAA AGGGAGTGAA 3060 AATTCCAGAA ATTTTGGTTA CAACCCTTCC CCCTTGAAGA TTAAAGGTAT CAAGTGCCCA 3120 CCTAGCAAGA CCAATATGCA TCAGGCCCGG AGGCATATGA GGCCTGCCCA AGCCATCCCT 3180 GATGATGTTT TGACACTGTC CAGCAGCACA GAAAGTGAGG GGGAGAGTGA AAGAAGCCAA 3240 AAGCTCATGG CTGGTCAGGC TCCCACTCCA GCAGCATACA GTGATGACAT CCAGACCATC 3300 TCATCTGGCT CTGATGGTGA AGATTTTGAA GACAAGAAGA ACATGCATGC TGGCCCAATC 3360 AAACATCAGG TGGCTGTGAA ATCTACACGT GGTTTTGCTT TAAAATCAAC ACATGGCATT 3420 GCTATCAAGT CAACCAACAT GGCATCCACA GACAAGGGTG AGAGTGCACC TGTCCACAAG 3480 AATACGCGCC AGTTCTATGA CGGTGAGGAA TCTTGCTACA TCATTGATGC CAAGCTAGAG 3540 GGTAACCTGG GCCGCTATCT CAACCACAGC TGCAGCCCCA ACCTGTTTGT CCAGAATGTC 3600 TTCGTGGACA CCCATGATCT TCGGTTCCCC TGGGTGGCTT TTTTTGCCAG CAAGAGGATA 3660 CGGGCTGGGA CAGAGCTGAC CTGGGACTAT AACTATGAGG TGGGCAGCGT GGAAGGCAAG 3720 GAACTGCTGT GCTGCTGTGG GGCCATAGAA TGCCGAGGAC GGCTTCTTTG A
3772Nucleotide Fasta Sequence
>ENSMEUP00000000505.1|SUV39|Macropus eugenii ATGGCTCCCTTTCCTGGGTGTTTTGGTTTAGGCGCTGCTGCAGCAGCTGCGATGGAAGCTCAGGAGATTGCGGAGCTGCAGCAGGCAGTGGTGGAGGAGCTGGGCATCTCCATGGAAGAACTTCGACAGTTTGTTGATGAGGAACTGGAAAAGATGGACTGTGTGAAGCTGCGCCAGAAGCAGCTAGCCGAGCTGGAGAGCCGCGTGGTGCAGAAGGAGTCGGAGGTAGCCCACGTGGACGAGCTCTTTCAAGAAGCATCCAGGGCAGTGACCAACTGCGAATCTCTGGTGAAGGATTTCTACTCCACACTGGGGCTGCAGTATCCGGAGAGCAGTTCCGAAGATGAAGCCTCCAGACCCACAGAAATCATTGAGATTCCTGATGAGGATGAGGATGATGTCCTCAGTGTTCATTCACTCCAAGAAACTATGGCTGCCCTGAGGAAGTCAACCCAAGATGTCCAAAAGTTCATGGATGCTGTCAGCAAGACTAGTTCCCAGGACCTGAACAGAGGAGACTTGGGTCAGGCACCTGTTGAGTTGAGTAAGGATGGTGACCTAGTTGTCAACATGAGAATCCTGGGCAAGAAAAGGACCAAGACATGGCACAAGGGGACCCTCATTGCCATCCAGACAGTTGGAACTGGGAGGAAATTCAAAGTCAAATTTGACAACAAAAGGAAGAGCCTATTGTTTGGGAACCATATTGCCTATGACTATCACCCTTCAGCAGACAAGTTACATGTAGGCAGCCGTGTGGTGGCCACGTATAAGGATAGGAATCAGGTGTGGCTCTATGCAGGTATTGTGGCTGAGATTCCGAAAGTCAAAAATAAGCTCAGGTTCCTCATCTTCTTTGATGATGGCTATGCATCCTATGTCACACAGTCTGAACTCTATCTCGTTTGCAGACCACTGAAGAATGTGTGGGAGGACATCGAGGACGTTTCATGCCGAGACTTCATCGAAGAATATGTCACTGCCTACCCCAACCGTCCCATGGTGCTACTTAAGAGTGGGCAGCTCATAAAGACTGAATGGGAAGGCACTTGGTGGAAATCCCGGGTGGAACAGGTGGATGGGAGTCTTGTCAAGATCCTGTTCCTGGATGACAAGAGGTGCGAATGGATCTATCGAGGTTCTACCCGACTGGAGCCCATGTTCAGCATGAAGACATCCACAGCTTCCACACTGGAGAAGAAACAGGGGGGGCAGCTCCAGATACATTCAAACATGGGTGATGTGAAGAGCAAAGGTCCTGTAGTACAGTATACTCAAGATCTCACTGGTACTGGAACCCAGTTCAAGCCCCTAGAACTACCTCATACTACATCCTTGCCTGCCCCAACCCTGTCTCCTCAAGTGACCGATTTGGAAAGTCTGAAGAGTCAGCTTACCCAGGAACGGAAGCAAGTGGCCAAAAAGAGCACATCTTTCCGACTAGGTTCTGTGAGTTCTGGTCATTCATTCCCTATGTCTCCTGGATTTAATGAGGCAGTCCCTGGTGGAAAGTCTGCAGTGGACCAGAAAGTCAGATTATCACTAGGCTCTGCAGCCCTTGGCCCACCTCCAGCTTTTCATGGCATACTGGAGTGGGCTTCAGCCAAACCCTCCAATCAGTCCCTGAGGGAGAAGCTCTTCTACTTGCCTCATGCCTGTAGTCACACCTGCCTCACTCGAGTGAGGCCAGTGAATAATTTGCAGTACCGGGGCAAGAATCCCCTCTTGGTTCCTCAGCTCTATGATTTCTGTCGTATGATGGCCCGGCGCCGGGTCAACCGCAAGATGGCCTTTCACATTATCTATAAGACACCCTGCGGCCTCTGCCTGAGGACAATGAACGAGATTGAACGCTATCTCTTTGAGACAACATGCGATTTCCTTTTCCTGGAGATGTTCTGTTTGGACATATATGTTCTTGTGGATCGGAAATTCCAGCCCTATAAGCCTTTTTACTACATCCTGGACATCACCCATGGCCAGGAGGATGTTCCTCTGTCATGTGTCAATGAGATTGATACCACCCCCCCACCCCAGGTGGCCTATAGCAAAGAGAGAATCCCAGGGAAGGGCGTCTTCATCAACACTAGCTGGGAGTTTCTTGTTGGCTGCGACTGCAAAGATGGTTGTCGAGACAAGTCTAAATGTGCTTGCCACCAGCTTACCATCCAGGCAACAGCCTGCACCCCAGGAGGCCAGATCAACCCTAACTCTGGCTACCAGCATAAGAGATTAGATGAGTGCCTACCCACAGGGGTATATGAATGTAACAAACGCTGCAAATGTAACCTGAACATGTGCACAAACCGCTTGGTGCAGCATGGGCTACAGGTTCGCCTGCAACTCTTCAAGACACAGAACAAGGGCTGGGGCATCCGGTGTTTGGATGATATCGCCAGAGGTTCCTTTGTCTGTATCTATGCAGGCAAAATTCTGACTGATGACTTTGCAGACAAAGAGGGTCTAGAAATGGGGGATGAGTACTTTGCAAACCTGGACCATATTGAAAGTGTAGAGAACTTTAAGGAAGGCTATGAAAGTGATGTCCCCTGCTCCTCCAACCACAGTGATGTGGACTTGAAAGACCAAGAGGATGGCAACAGTGGCACTGAGAATCTTGAAGTGTCTAATGACGACAGTTCAGATGATAACTTTTGCAAGGATGAGGACTTTAGTACCAGTTCAGTGTGGCGTAGTTATGCCACCCGGCGGCAGACAAGAGGCCAGAAAGAGAATGAGTTATCTGAGACTGCCTCCAAAGACTCCCGCCTCCCAGACTCCGGCCCCTCTCATCTTTCTGCCCCTCCAGCTTCCATAGGGGGATGTAAACTACCTCCTTCCTCCGAGGACACACCCAAGAACAAAGTGGCCACATGGCTAAGTTGCAACAGTGTCAGTGATGGCACCTTTCCTGACTCAGATAGCCACTCCTCCTTCAGGACCAGCGAGGGTGGAAATGGGAGGGCTGGGGGAGGCCATGGGTATGCAGAGAAGCCCTCCATCTCAGGGGTAGGGGTCAAAGAAGAGGGGTATGTTAAGCCACCCAAGAAAGGGAGTGAAAATTCCAGAAATTTTGGTTACAACCCTTCCCCCTTGAAGATTAAAGGTATCAAGTGCCCACCTAGCAAGACCAATATGCATCAGGCCCGGAGGCATATGAGGCCTGCCCAAGCCATCCCTGATGATGTTTTGACACTGTCCAGCAGCACAGAAAGTGAGGGGGAGAGTGAAAGAAGCCAAAAGCTCATGGCTGGTCAGGCTCCCACTCCAGCAGCATACAGTGATGACATCCAGACCATCTCATCTGGCTCTGATGGTGAAGATTTTGAAGACAAGAAGAACATGCATGCTGGCCCAATCAAACATCAGGTGGCTGTGAAATCTACACGTGGTTTTGCTTTAAAATCAACACATGGCATTGCTATCAAGTCAACCAACATGGCATCCACAGACAAGGGTGAGAGTGCACCTGTCCACAAGAATACGCGCCAGTTCTATGACGGTGAGGAATCTTGCTACATCATTGATGCCAAGCTAGAGGGTAACCTGGGCCGCTATCTCAACCACAGCTGCAGCCCCAACCTGTTTGTCCAGAATGTCTTCGTGGACACCCATGATCTTCGGTTCCCCTGGGTGGCTTTTTTTGCCAGCAAGAGGATACGGGCTGGGACAGAGCTGACCTGGGACTATAACTATGAGGTGGGCAGCGTGGAAGGCAAGGAACTGCTGTGCTGCTGTGGGGCCATAGAATGCCGAGGACGGCTTCTTTGA
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Sequence Source |
Ensembl |
Orthology |
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Created Date |
25-Jun-2016 |