Tag |
Content |
WERAM ID |
WERAM-Mum-0023 |
Ensembl Protein ID |
ENSMUSP00000102789.3 |
Uniprot Accession |
O88974; SETB1_MOUSE; Q6AXH8; Q78N64; Q78N65; Q80U84; Q8BTV6; Q8CIX7; Q922K1 |
Genbank Protein ID |
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Protein Name |
Histone-lysine N-methyltransferase SETDB1 |
Genbank Nucleotide ID |
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Gene Name |
SETDB1;ESET |
Ensembl Information |
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Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
HMT |
SUV39 |
SET |
H3K9; H3K27 |
K |
26279314; 22991445 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
SUV39 |
1.10e-75 |
254.2 |
262 |
1282 |
|
Organism |
Mus musculus |
NCBI Taxa ID |
10090 |
Functional Description (View)Functional Description
Histone methyltransferase that specifically trimethylates 'Lys-9' of histone H3. H3 'Lys-9' trimethylation represents a specific tag for epigenetic transcriptional repression by recruiting HP1 (CBX1, CBX3 and/or CBX5) proteins to methylated histones. Mainly functions in euchromatin regions, thereby playing a central role in the silencing of euchromatic genes. H3 'Lys-9' trimethylation is coordinated with DNA methylation. Probably forms a complex with MBD1 and ATF7IP that represses transcription and couples DNA methylation and histone 'Lys-9' trimethylation. Its activity is dependent on MBD1 and is heritably maintained through DNA replication by being recruited by CAF-1. SETDB1 is targeted to histone H3 by TRIM28/TIF1B, a factor recruited by KRAB zinc-finger proteins. Probably forms a corepressor complex required for activated KRAS-mediated promoter hypermethylation and transcriptional silencing of tumor suppressor genes (TSGs) or other tumor-related genes in colorectal cancer (CRC) cells (By similarity). Also required to maintain a transcriptionally repressive state of genes in undifferentiated embryonic stem cells (ESCs) (By similarity). Associates at promoter regions of tumor suppressor genes (TSGs) leading to their gene silencing (By similarity). |
Histone methyltransferase that specifically trimethylates 'Lys-9' of histone H3. H3 'Lys-9' trimethylation represents a specific tag for epigenetic transcriptional repression by recruiting HP1 (CBX1, CBX3 and/or CBX5) proteins to methylated histones. Mainly functions in euchromatin regions, thereby playing a central role in the silencing of euchromatic genes. H3 'Lys-9' trimethylation is coordinated with DNA methylation. Probably forms a complex with MBD1 and ATF7IP that represses transcription and couples DNA methylation and histone 'Lys-9' trimethylation. Its activity is dependent on MBD1 and is heritably maintained through DNA replication by being recruited by CAF-1. SETDB1 is targeted to histone H3 by TRIM28/TIF1B, a factor recruited by KRAB zinc-finger proteins. Probably forms a corepressor complex required for activated KRAS-mediated promoter hypermethylation and transcriptional silencing of tumor suppressor genes (TSGs) or other tumor-related genes in colorectal cancer (CRC) cells (By similarity). Also required to maintain a transcriptionally repressive state of genes in undifferentiated embryonic stem cells (ESCs) (By similarity). Associates at promoter regions of tumor suppressor genes (TSGs) leading to their gene silencing (By similarity).
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Domain Profile |
HMT SUV39
SUV39.txt 15 vrclddiakgsFvciyaGeiltddeaek 42 r + + + g+ v yaG + ++ ++++ ENSMUSP00000102789.3 262 SRVVAKYKDGNQVWLYAGIVAETPNVKN 289 578889999*********9999888765 PP SUV39.txt 1 vrLqvfktenkGwGvrclddiakgsFvciyaGeiltddeaekegleegdeyladldskesvenlkegyesdvplssdss........ 79 vrLq+fkt+nkGwG+rclddiakgsFvciyaG+iltdd+a+kegle+gdey+a+ld++esven+kegyesdvp+ssdss ENSMUSP00000102789.3 820 VRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDVPTSSDSSgvdmkdqe 906 79************************************************************************************* PP SUV39.txt 80 ....................................................................................... 79 ENSMUSP00000102789.3 907 dgnsgsedpeesnddssddnfckdedfstssvwrsyatrrqtrgqkenelsemtskdsrppdlgpphvpipssvsvggcnppsseet 993 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSMUSP00000102789.3 994 pknkvaswlscnsvseggfadsdsrssfktseggdgragggrgeaerastsglsfkdegdnkqpkkedpenrnkmpvvtegsqnhgh 1080 *************************************************************************************** PP SUV39.txt 80 ....................................................................................... 79 ENSMUSP00000102789.3 1081 nppmkseglrrsaskmsvlqsqrvvtstqsnpddiltlssstesegesgtsrkptaghtsatavdsddiqtissgsdgddfedkknl 1167 *************************************************************************************** PP SUV39.txt 80 ............................................ntrqekdkeeseyiidakkegnvgrflnHscspNlfvqnvfvd 122 ntrq++d+ees+yiidak egn+gr+lnHscspNlfvqnvfvd ENSMUSP00000102789.3 1168 sgptkrqvavkstrgfalksthgiaikstnmasvdkgesapvrkNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVD 1254 *************************************************************************************** PP SUV39.txt 123 thdlrfprvafFaskrikagtELtwdYg 150 thdlrfp+vafFaskri+agtELtwdY+ ENSMUSP00000102789.3 1255 THDLRFPWVAFFASKRIRAGTELTWDYN 1282 ***************************7 PP
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Protein Sequence (Fasta) | MSSLPGCMSL AAAPAAADSA EIAELQQAVV EELGISMEEL RQYIDEELEK MDCIQQRKKQ 60 LAELETWVLQ KESEVAYVDR LFDDASREVT NCESLVKDFY SKLGLQYHDS SSEDEASRPT 120 EIIEIPDEDD DVLSIDSGDA GSRTPKDQKL REAMAALRKS AQDVQKFMDA VNKKSSSQDL 180 HKGTLGQVSG ELSKDGDLIV SMRILGKKRT KTWHKGTLIA IQTVGLGKKY KVKFDNKGKS 240 LLSGNHIAYD YHPPADKLFV GSRVVAKYKD GNQVWLYAGI VAETPNVKNK LRFLIFFDDG 300 YASYVTQSEL YPICRPLKKT WEDIEDSSCR DFIEEYITAY PNRPMVLLKS GQLIKTEWEG 360 TWWKSRVEEV DGSLVRILFL DDKRCEWIYR GSTRLEPMFS MKTSSASAME KKQGGQLRTR 420 PNMGAVRSKG PVVQYTQDLT GTGIQFKPME PLQPIAPPAP LPIPPLSPQA ADTDLESQLA 480 QSRKQVAKKS TSFRPGSVGS GHSSPTSSTL SENVSAGKLG INQTYRSPLA SVTSTPASAA 540 PPVPPVPPGP PTPPGPPAPP GPLAPPAFHG MLERAPAEPS YRAPMEKLFY LPHVCSYTCL 600 SRIRPMRNEQ YRGKNPLLVP LLYDFRRMTA RRRVNRKMGF HVIYKTPCGL CLRTMQEIER 660 YLFETGCDFL FLEMFCLDPY VLVDRKFQPF KPFYYILDIT YGKEDVPLSC VNEIDTTPPP 720 QVAYSKERIP GKGVFINTGP EFLVGCDCKD GCRDKSKCAC HQLTIQATAC TPGGQVNPNS 780 GYQYKRLEEC LPTGVYECNK RCNCDPNMCT NRLVQHGLQV RLQLFKTQNK GWGIRCLDDI 840 AKGSFVCIYA GKILTDDFAD KEGLEMGDEY FANLDHIESV ENFKEGYESD VPTSSDSSGV 900 DMKDQEDGNS GSEDPEESND DSSDDNFCKD EDFSTSSVWR SYATRRQTRG QKENELSEMT 960 SKDSRPPDLG PPHVPIPSSV SVGGCNPPSS EETPKNKVAS WLSCNSVSEG GFADSDSRSS 1020 FKTSEGGDGR AGGGRGEAER ASTSGLSFKD EGDNKQPKKE DPENRNKMPV VTEGSQNHGH 1080 NPPMKSEGLR RSASKMSVLQ SQRVVTSTQS NPDDILTLSS STESEGESGT SRKPTAGHTS 1140 ATAVDSDDIQ TISSGSDGDD FEDKKNLSGP TKRQVAVKST RGFALKSTHG IAIKSTNMAS 1200 VDKGESAPVR KNTRQFYDGE ESCYIIDAKL EGNLGRYLNH SCSPNLFVQN VFVDTHDLRF 1260 PWVAFFASKR IRAGTELTWD YNYEVGSVEG KELLCCCGAI ECRGRLL 1307Protein Fasta Sequence
>ENSMUSP00000102789.3|SETDB1;ESET|Mus musculus MSSLPGCMSLAAAPAAADSAEIAELQQAVVEELGISMEELRQYIDEELEKMDCIQQRKKQLAELETWVLQKESEVAYVDRLFDDASREVTNCESLVKDFYSKLGLQYHDSSSEDEASRPTEIIEIPDEDDDVLSIDSGDAGSRTPKDQKLREAMAALRKSAQDVQKFMDAVNKKSSSQDLHKGTLGQVSGELSKDGDLIVSMRILGKKRTKTWHKGTLIAIQTVGLGKKYKVKFDNKGKSLLSGNHIAYDYHPPADKLFVGSRVVAKYKDGNQVWLYAGIVAETPNVKNKLRFLIFFDDGYASYVTQSELYPICRPLKKTWEDIEDSSCRDFIEEYITAYPNRPMVLLKSGQLIKTEWEGTWWKSRVEEVDGSLVRILFLDDKRCEWIYRGSTRLEPMFSMKTSSASAMEKKQGGQLRTRPNMGAVRSKGPVVQYTQDLTGTGIQFKPMEPLQPIAPPAPLPIPPLSPQAADTDLESQLAQSRKQVAKKSTSFRPGSVGSGHSSPTSSTLSENVSAGKLGINQTYRSPLASVTSTPASAAPPVPPVPPGPPTPPGPPAPPGPLAPPAFHGMLERAPAEPSYRAPMEKLFYLPHVCSYTCLSRIRPMRNEQYRGKNPLLVPLLYDFRRMTARRRVNRKMGFHVIYKTPCGLCLRTMQEIERYLFETGCDFLFLEMFCLDPYVLVDRKFQPFKPFYYILDITYGKEDVPLSCVNEIDTTPPPQVAYSKERIPGKGVFINTGPEFLVGCDCKDGCRDKSKCACHQLTIQATACTPGGQVNPNSGYQYKRLEECLPTGVYECNKRCNCDPNMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDVPTSSDSSGVDMKDQEDGNSGSEDPEESNDDSSDDNFCKDEDFSTSSVWRSYATRRQTRGQKENELSEMTSKDSRPPDLGPPHVPIPSSVSVGGCNPPSSEETPKNKVASWLSCNSVSEGGFADSDSRSSFKTSEGGDGRAGGGRGEAERASTSGLSFKDEGDNKQPKKEDPENRNKMPVVTEGSQNHGHNPPMKSEGLRRSASKMSVLQSQRVVTSTQSNPDDILTLSSSTESEGESGTSRKPTAGHTSATAVDSDDIQTISSGSDGDDFEDKKNLSGPTKRQVAVKSTRGFALKSTHGIAIKSTNMASVDKGESAPVRKNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
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Nucleotide Sequence (Fasta) | CAAGGCGGAG CCCTGGAGTA AAACCTGGGG TCGGGGTTGT GAGACGCGGC CCTTGCGGTC 60 GGGCGCCAGA GTTGTGGGGA GGACGGACTG AGGGCCAAAG CATGTCCTCC CTCCCTGGGT 120 GCATGAGTTT GGCTGCAGCG CCAGCTGCAG CTGACTCTGC AGAGATTGCT GAGCTGCAGC 180 AGGCGGTGGT TGAAGAGCTG GGTATCTCTA TGGAGGAACT TCGTCAGTAC ATTGATGAGG 240 AACTGGAAAA GATGGACTGC ATACAGCAGC GCAAGAAGCA GCTCGCAGAG CTGGAGACGT 300 GGGTACTACA GAAAGAGTCT GAAGTGGCTT ATGTTGATCG GCTGTTTGAT GATGCATCCA 360 GGGAAGTGAC TAACTGTGAG TCTTTGGTGA AGGATTTCTA CTCTAAGCTG GGACTACAGT 420 ATCATGACAG TAGCTCTGAG GATGAAGCTT CCCGGCCCAC AGAGATCATT GAGATTCCTG 480 ATGAAGATGA TGATGTCCTC AGTATTGATT CAGGTGATGC TGGGAGCAGA ACTCCAAAAG 540 ACCAGAAGCT TCGTGAAGCT ATGGCTGCCT TAAGAAAATC AGCTCAAGAT GTCCAGAAGT 600 TCATGGATGC TGTCAACAAG AAAAGCAGTT CTCAAGATCT ACATAAAGGA ACCTTGGGTC 660 AGGTGTCTGG AGAACTGAGC AAAGATGGGG ACCTGATAGT CAGCATGCGG ATTCTGGGCA 720 AGAAGAGGAC TAAGACATGG CACAAAGGCA CCCTTATTGC CATCCAGACT GTTGGGCTAG 780 GAAAAAAATA CAAAGTGAAA TTTGACAACA AAGGAAAGAG TCTGCTATCT GGGAACCATA 840 TTGCCTATGA TTACCACCCT CCCGCTGACA AGCTGTTTGT GGGCAGTCGA GTGGTGGCCA 900 AGTACAAAGA TGGAAATCAG GTCTGGCTTT ATGCTGGCAT TGTAGCTGAG ACCCCTAACG 960 TCAAGAACAA GCTCAGATTT TTAATTTTTT TTGATGATGG CTATGCTTCC TATGTCACTC 1020 AGTCAGAGCT TTATCCCATT TGCCGACCAC TAAAAAAGAC TTGGGAGGAC ATAGAAGATA 1080 GCTCCTGCCG AGACTTCATA GAGGAATATA TCACTGCCTA TCCAAACCGC CCAATGGTAC 1140 TTCTCAAGAG TGGGCAGCTT ATCAAGACTG AGTGGGAAGG CACATGGTGG AAGTCTCGAG 1200 TTGAAGAGGT GGATGGCAGC CTAGTCAGGA TCCTCTTTCT GGATGACAAA AGATGTGAGT 1260 GGATATATCG AGGCTCTACA CGCCTGGAAC CTATGTTTAG TATGAAGACA TCCTCAGCCT 1320 CTGCAATGGA GAAGAAGCAA GGGGGGCAAC TCAGAACCCG TCCTAATATG GGTGCTGTGA 1380 GGAGCAAAGG TCCTGTTGTT CAGTATACAC AGGATCTAAC TGGTACTGGA ATCCAGTTTA 1440 AGCCCATGGA GCCCCTACAG CCTATAGCTC CACCGGCCCC ACTTCCTATA CCTCCTCTTT 1500 CCCCCCAAGC AGCTGACACT GACTTAGAAA GCCAACTTGC ACAATCACGG AAACAAGTAG 1560 CCAAGAAGAG CACATCATTC CGACCAGGAT CTGTGGGCTC CGGCCATTCC TCCCCTACTT 1620 CATCCACACT CAGTGAAAAT GTGTCTGCTG GGAAACTTGG GATAAACCAG ACATATCGGT 1680 CACCTTTGGC CTCAGTAACA TCTACCCCAG CATCTGCAGC CCCTCCAGTC CCTCCAGTCC 1740 CACCAGGGCC TCCAACCCCT CCAGGGCCTC CAGCTCCTCC AGGGCCTCTA GCTCCTCCAG 1800 CCTTCCATGG CATGTTAGAG CGGGCACCAG CTGAGCCCTC CTACCGAGCC CCCATGGAGA 1860 AGCTTTTCTA TTTACCTCAT GTCTGCAGTT ACACTTGTTT GTCCCGGATC AGACCCATGA 1920 GAAACGAACA GTATCGGGGC AAGAACCCTC TATTAGTTCC ACTTCTGTAT GACTTCCGGA 1980 GGATGACAGC ACGGCGCAGA GTTAACCGCA AAATGGGCTT TCATGTAATC TATAAGACAC 2040 CCTGTGGTCT CTGCCTTCGG ACGATGCAGG AGATAGAGCG CTACCTTTTT GAGACTGGCT 2100 GTGACTTTCT GTTCCTGGAG ATGTTCTGTT TGGATCCATA TGTTCTTGTT GACAGAAAGT 2160 TTCAACCCTT TAAGCCTTTT TACTATATTT TGGACATCAC CTATGGCAAG GAAGATGTTC 2220 CCCTGTCCTG TGTTAATGAG ATTGACACAA CTCCCCCACC CCAGGTGGCC TACAGCAAGG 2280 AACGCATTCC TGGCAAGGGT GTTTTCATTA ACACAGGCCC TGAATTTCTG GTTGGCTGTG 2340 ACTGCAAGGA TGGGTGTCGG GATAAATCCA AATGTGCCTG CCACCAGCTA ACTATCCAGG 2400 CCACAGCCTG TACCCCAGGG GGCCAAGTCA ACCCTAACTC TGGCTACCAG TATAAAAGAC 2460 TAGAAGAGTG TCTGCCCACA GGGGTTTATG AGTGTAACAA ACGCTGCAAT TGTGACCCAA 2520 ACATGTGCAC AAATCGGTTG GTGCAGCATG GTCTGCAGGT TCGACTACAG CTGTTTAAGA 2580 CACAGAACAA GGGCTGGGGT ATCCGCTGCT TGGATGATAT TGCCAAAGGC TCTTTTGTCT 2640 GCATTTATGC AGGCAAAATC CTGACAGATG ACTTTGCAGA CAAAGAAGGC CTGGAGATGG 2700 GTGATGAGTA CTTTGCAAAT CTGGACCACA TTGAAAGTGT GGAGAACTTC AAGGAAGGAT 2760 ATGAGAGTGA TGTCCCCACT TCCTCTGACA GCAGTGGGGT AGATATGAAG GACCAGGAAG 2820 ATGGCAACAG CGGTTCAGAG GACCCTGAAG AATCCAATGA TGACAGCTCT GATGATAACT 2880 TCTGTAAGGA TGAGGACTTC AGCACCAGTT CAGTGTGGCG TAGCTATGCT ACCCGGAGGC 2940 AGACTCGGGG TCAAAAGGAG AATGAATTGT CTGAGATGAC TTCCAAGGAC TCCCGCCCCC 3000 CAGACCTCGG GCCTCCACAT GTTCCTATCC CTTCCTCAGT ATCTGTAGGG GGCTGCAATC 3060 CACCTTCCTC TGAAGAGACA CCCAAGAACA AGGTGGCCTC GTGGTTGAGT TGCAATAGTG 3120 TCAGTGAAGG TGGATTTGCT GACTCTGACA GCCGTTCTTC CTTCAAGACT AGTGAAGGTG 3180 GAGATGGCCG TGCTGGGGGA GGCCGGGGAG AGGCTGAAAG GGCCTCTACC TCAGGATTGA 3240 GCTTCAAGGA TGAAGGAGAC AATAAGCAGC CTAAAAAAGA GGACCCTGAG AACCGAAACA 3300 AGATGCCAGT AGTTACTGAA GGCTCTCAGA ATCATGGACA TAATCCTCCC ATGAAGTCTG 3360 AAGGGCTTCG CCGATCAGCT AGTAAAATGT CTGTGCTCCA GAGCCAGCGA GTTGTGACTT 3420 CTACTCAGTC AAACCCTGAT GACATCCTGA CACTGTCCAG CAGCACAGAG AGTGAGGGGG 3480 AAAGTGGAAC CAGCCGAAAG CCCACTGCTG GTCACACTTC AGCCACAGCT GTTGATAGTG 3540 ATGACATCCA GACCATCTCT TCTGGCTCTG ACGGTGATGA CTTTGAGGAC AAGAAGAACT 3600 TGTCAGGACC AACAAAGCGC CAGGTGGCAG TAAAATCAAC CCGAGGCTTT GCTCTTAAAT 3660 CAACCCATGG TATTGCCATT AAATCAACCA ACATGGCTTC CGTGGACAAG GGGGAGAGTG 3720 CACCAGTTCG TAAGAACACA CGCCAGTTCT ATGATGGTGA AGAGTCTTGC TACATCATTG 3780 ATGCCAAACT TGAAGGCAAC CTAGGCCGCT ACCTCAATCA CAGTTGCAGC CCCAACCTGT 3840 TTGTCCAGAA TGTGTTTGTG GATACCCATG ATCTTCGCTT CCCTTGGGTG GCCTTCTTTG 3900 CCAGCAAGAG AATCCGGGCT GGAACAGAAC TCACTTGGGA CTACAACTAC GAAGTGGGCA 3960 GTGTGGAAGG CAAGGAGCTG CTGTGCTGCT GTGGGGCCAT TGAATGCAGA GGGAGACTTC 4020 TTTAGAGGAA GACTTCCTCA CTTTGAGAAC GCTTGAACTA TCCTTTTCCC CAGGAACTGG 4080 GTCTTCCTGA CTGTTGAACT CTGACCCCAA GTCTCTGATC TAGCTTCTTC CCAGCTCCTA 4140 GTAGATAGAG ATGGGGATTC TCAATCAGGA CTTTCCCAGC GTGGTGCTAG CAGGCACTAG 4200 GGTGGGTAGA CATGACCACT CTAGCATCAG CCTGAGGTCC TTCTCATCTT GTATGCATTC 4260 ATGATTCACA TGGGCTGTGT ATCTGCCATC CCTGATTTGT ATGGTTTCTT GAAAGTCTTC 4320 TAACAAGATG GTAAAGTAGA GATTGTGGTT TGTCTTATCT CCTGCCTTGA TCTTCCATGT 4380 CATTTCCCAG TGGGCAACTA TCATTAGTTT ATACCTCGAT TTTATTTGCC CTGTGTAATT 4440 TTTAACTAAA AATGTTACAT AACCACAAGG GAGGCCTAAG AAAAAAACTA ACCCTTTCTC 4500 AAGTCTTAAT AGTCTGACAC AGTCATGTTT TATTTAACCT TTAATATACT TTAATTAAAA 4560 AAAATTAACA GTA
4574Nucleotide Fasta Sequence
>ENSMUSP00000102789.3|SUV39|Mus musculus CAAGGCGGAGCCCTGGAGTAAAACCTGGGGTCGGGGTTGTGAGACGCGGCCCTTGCGGTCGGGCGCCAGAGTTGTGGGGAGGACGGACTGAGGGCCAAAGCATGTCCTCCCTCCCTGGGTGCATGAGTTTGGCTGCAGCGCCAGCTGCAGCTGACTCTGCAGAGATTGCTGAGCTGCAGCAGGCGGTGGTTGAAGAGCTGGGTATCTCTATGGAGGAACTTCGTCAGTACATTGATGAGGAACTGGAAAAGATGGACTGCATACAGCAGCGCAAGAAGCAGCTCGCAGAGCTGGAGACGTGGGTACTACAGAAAGAGTCTGAAGTGGCTTATGTTGATCGGCTGTTTGATGATGCATCCAGGGAAGTGACTAACTGTGAGTCTTTGGTGAAGGATTTCTACTCTAAGCTGGGACTACAGTATCATGACAGTAGCTCTGAGGATGAAGCTTCCCGGCCCACAGAGATCATTGAGATTCCTGATGAAGATGATGATGTCCTCAGTATTGATTCAGGTGATGCTGGGAGCAGAACTCCAAAAGACCAGAAGCTTCGTGAAGCTATGGCTGCCTTAAGAAAATCAGCTCAAGATGTCCAGAAGTTCATGGATGCTGTCAACAAGAAAAGCAGTTCTCAAGATCTACATAAAGGAACCTTGGGTCAGGTGTCTGGAGAACTGAGCAAAGATGGGGACCTGATAGTCAGCATGCGGATTCTGGGCAAGAAGAGGACTAAGACATGGCACAAAGGCACCCTTATTGCCATCCAGACTGTTGGGCTAGGAAAAAAATACAAAGTGAAATTTGACAACAAAGGAAAGAGTCTGCTATCTGGGAACCATATTGCCTATGATTACCACCCTCCCGCTGACAAGCTGTTTGTGGGCAGTCGAGTGGTGGCCAAGTACAAAGATGGAAATCAGGTCTGGCTTTATGCTGGCATTGTAGCTGAGACCCCTAACGTCAAGAACAAGCTCAGATTTTTAATTTTTTTTGATGATGGCTATGCTTCCTATGTCACTCAGTCAGAGCTTTATCCCATTTGCCGACCACTAAAAAAGACTTGGGAGGACATAGAAGATAGCTCCTGCCGAGACTTCATAGAGGAATATATCACTGCCTATCCAAACCGCCCAATGGTACTTCTCAAGAGTGGGCAGCTTATCAAGACTGAGTGGGAAGGCACATGGTGGAAGTCTCGAGTTGAAGAGGTGGATGGCAGCCTAGTCAGGATCCTCTTTCTGGATGACAAAAGATGTGAGTGGATATATCGAGGCTCTACACGCCTGGAACCTATGTTTAGTATGAAGACATCCTCAGCCTCTGCAATGGAGAAGAAGCAAGGGGGGCAACTCAGAACCCGTCCTAATATGGGTGCTGTGAGGAGCAAAGGTCCTGTTGTTCAGTATACACAGGATCTAACTGGTACTGGAATCCAGTTTAAGCCCATGGAGCCCCTACAGCCTATAGCTCCACCGGCCCCACTTCCTATACCTCCTCTTTCCCCCCAAGCAGCTGACACTGACTTAGAAAGCCAACTTGCACAATCACGGAAACAAGTAGCCAAGAAGAGCACATCATTCCGACCAGGATCTGTGGGCTCCGGCCATTCCTCCCCTACTTCATCCACACTCAGTGAAAATGTGTCTGCTGGGAAACTTGGGATAAACCAGACATATCGGTCACCTTTGGCCTCAGTAACATCTACCCCAGCATCTGCAGCCCCTCCAGTCCCTCCAGTCCCACCAGGGCCTCCAACCCCTCCAGGGCCTCCAGCTCCTCCAGGGCCTCTAGCTCCTCCAGCCTTCCATGGCATGTTAGAGCGGGCACCAGCTGAGCCCTCCTACCGAGCCCCCATGGAGAAGCTTTTCTATTTACCTCATGTCTGCAGTTACACTTGTTTGTCCCGGATCAGACCCATGAGAAACGAACAGTATCGGGGCAAGAACCCTCTATTAGTTCCACTTCTGTATGACTTCCGGAGGATGACAGCACGGCGCAGAGTTAACCGCAAAATGGGCTTTCATGTAATCTATAAGACACCCTGTGGTCTCTGCCTTCGGACGATGCAGGAGATAGAGCGCTACCTTTTTGAGACTGGCTGTGACTTTCTGTTCCTGGAGATGTTCTGTTTGGATCCATATGTTCTTGTTGACAGAAAGTTTCAACCCTTTAAGCCTTTTTACTATATTTTGGACATCACCTATGGCAAGGAAGATGTTCCCCTGTCCTGTGTTAATGAGATTGACACAACTCCCCCACCCCAGGTGGCCTACAGCAAGGAACGCATTCCTGGCAAGGGTGTTTTCATTAACACAGGCCCTGAATTTCTGGTTGGCTGTGACTGCAAGGATGGGTGTCGGGATAAATCCAAATGTGCCTGCCACCAGCTAACTATCCAGGCCACAGCCTGTACCCCAGGGGGCCAAGTCAACCCTAACTCTGGCTACCAGTATAAAAGACTAGAAGAGTGTCTGCCCACAGGGGTTTATGAGTGTAACAAACGCTGCAATTGTGACCCAAACATGTGCACAAATCGGTTGGTGCAGCATGGTCTGCAGGTTCGACTACAGCTGTTTAAGACACAGAACAAGGGCTGGGGTATCCGCTGCTTGGATGATATTGCCAAAGGCTCTTTTGTCTGCATTTATGCAGGCAAAATCCTGACAGATGACTTTGCAGACAAAGAAGGCCTGGAGATGGGTGATGAGTACTTTGCAAATCTGGACCACATTGAAAGTGTGGAGAACTTCAAGGAAGGATATGAGAGTGATGTCCCCACTTCCTCTGACAGCAGTGGGGTAGATATGAAGGACCAGGAAGATGGCAACAGCGGTTCAGAGGACCCTGAAGAATCCAATGATGACAGCTCTGATGATAACTTCTGTAAGGATGAGGACTTCAGCACCAGTTCAGTGTGGCGTAGCTATGCTACCCGGAGGCAGACTCGGGGTCAAAAGGAGAATGAATTGTCTGAGATGACTTCCAAGGACTCCCGCCCCCCAGACCTCGGGCCTCCACATGTTCCTATCCCTTCCTCAGTATCTGTAGGGGGCTGCAATCCACCTTCCTCTGAAGAGACACCCAAGAACAAGGTGGCCTCGTGGTTGAGTTGCAATAGTGTCAGTGAAGGTGGATTTGCTGACTCTGACAGCCGTTCTTCCTTCAAGACTAGTGAAGGTGGAGATGGCCGTGCTGGGGGAGGCCGGGGAGAGGCTGAAAGGGCCTCTACCTCAGGATTGAGCTTCAAGGATGAAGGAGACAATAAGCAGCCTAAAAAAGAGGACCCTGAGAACCGAAACAAGATGCCAGTAGTTACTGAAGGCTCTCAGAATCATGGACATAATCCTCCCATGAAGTCTGAAGGGCTTCGCCGATCAGCTAGTAAAATGTCTGTGCTCCAGAGCCAGCGAGTTGTGACTTCTACTCAGTCAAACCCTGATGACATCCTGACACTGTCCAGCAGCACAGAGAGTGAGGGGGAAAGTGGAACCAGCCGAAAGCCCACTGCTGGTCACACTTCAGCCACAGCTGTTGATAGTGATGACATCCAGACCATCTCTTCTGGCTCTGACGGTGATGACTTTGAGGACAAGAAGAACTTGTCAGGACCAACAAAGCGCCAGGTGGCAGTAAAATCAACCCGAGGCTTTGCTCTTAAATCAACCCATGGTATTGCCATTAAATCAACCAACATGGCTTCCGTGGACAAGGGGGAGAGTGCACCAGTTCGTAAGAACACACGCCAGTTCTATGATGGTGAAGAGTCTTGCTACATCATTGATGCCAAACTTGAAGGCAACCTAGGCCGCTACCTCAATCACAGTTGCAGCCCCAACCTGTTTGTCCAGAATGTGTTTGTGGATACCCATGATCTTCGCTTCCCTTGGGTGGCCTTCTTTGCCAGCAAGAGAATCCGGGCTGGAACAGAACTCACTTGGGACTACAACTACGAAGTGGGCAGTGTGGAAGGCAAGGAGCTGCTGTGCTGCTGTGGGGCCATTGAATGCAGAGGGAGACTTCTTTAGAGGAAGACTTCCTCACTTTGAGAACGCTTGAACTATCCTTTTCCCCAGGAACTGGGTCTTCCTGACTGTTGAACTCTGACCCCAAGTCTCTGATCTAGCTTCTTCCCAGCTCCTAGTAGATAGAGATGGGGATTCTCAATCAGGACTTTCCCAGCGTGGTGCTAGCAGGCACTAGGGTGGGTAGACATGACCACTCTAGCATCAGCCTGAGGTCCTTCTCATCTTGTATGCATTCATGATTCACATGGGCTGTGTATCTGCCATCCCTGATTTGTATGGTTTCTTGAAAGTCTTCTAACAAGATGGTAAAGTAGAGATTGTGGTTTGTCTTATCTCCTGCCTTGATCTTCCATGTCATTTCCCAGTGGGCAACTATCATTAGTTTATACCTCGATTTTATTTGCCCTGTGTAATTTTTAACTAAAAATGTTACATAACCACAAGGGAGGCCTAAGAAAAAAACTAACCCTTTCTCAAGTCTTAATAGTCTGACACAGTCATGTTTTATTTAACCTTTAATATACTTTAATTAAAAAAAATTAACAGTA
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Sequence Source |
Ensembl |
Keyword |
KW-0025--Alternative splicing KW-0156--Chromatin regulator KW-0158--Chromosome KW-0175--Coiled coil KW-0181--Complete proteome KW-1017--Isopeptide bond KW-0479--Metal-binding KW-0489--Methyltransferase KW-0539--Nucleus KW-0597--Phosphoprotein KW-1185--Reference proteome KW-0677--Repeat KW-0678--Repressor KW-0949--S-adenosyl-L-methionine KW-0804--Transcription KW-0805--Transcription regulation KW-0808--Transferase KW-0832--Ubl conjugation KW-0862--Zinc --
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Interpro |
IPR016177--DNA-bd_dom IPR025796--Hist-Lys_N-MeTrfase_SETDB1 IPR001739--Methyl_CpG_DNA-bd IPR003616--Post-SET_dom IPR007728--Pre-SET_dom IPR001214--SET_dom IPR002999--Tudor
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PROSITE |
PS50982--MBD PS50868--POST_SET PS50867--PRE_SET PS51573--SAM_MT43_SUVAR39_1 PS50280--SET
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Pfam |
PF01429--MBD PF05033--Pre-SET PF00856--SET
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Gene Ontology |
GO:0005694--C:chromosome GO:0005737--C:cytoplasm GO:0043231--C:intracellular membrane-bounded organelle GO:0005654--C:nucleoplasm GO:0005634--C:nucleus GO:0005886--C:plasma membrane GO:0003677--F:DNA binding GO:0018024--F:histone-lysine N-methyltransferase activity GO:1990841--F:promoter-specific chromatin binding GO:0008270--F:zinc ion binding GO:0060348--P:bone development GO:0036124--P:histone H3-K9 trimethylation GO:0001833--P:inner cell mass cell proliferation GO:0000122--P:negative regulation of transcription from RNA polymerase II promoter GO:0090309--P:positive regulation of methylation-dependent chromatin silencing GO:0007265--P:Ras protein signal transduction GO:0006351--P:transcription, DNA-templated
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Orthology |
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Created Date |
25-Jun-2016 |