Tag |
Content |
WERAM ID |
WERAM-Hos-0145 |
Ensembl Protein ID |
ENSP00000271640.5 |
Uniprot Accession |
Q15047; SETB1_HUMAN; A6NEW2; Q5SZD8; Q5SZD9; Q5SZE0; Q5SZE7; Q96GM9 |
Genbank Protein ID |
NP_001138887.1; NP_001230420.1; NP_036564.3 |
Protein Name |
Histone-lysine N-methyltransferase SETDB1 |
Genbank Nucleotide ID |
NM_001145415.1; NM_001243491.1; NM_012432.3 |
Gene Name |
SETDB1;ESET;KG1T;KMT1E;TDRD21;H3-K9-HMTase4 |
Ensembl Information |
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Details |
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Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
SUV39 |
9.90e-76 |
255.1 |
803 |
1266 |
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Organism |
Homo sapiens |
NCBI Taxa ID |
9606 |
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 (PubMed:24623306). Also required to maintain a transcriptionally repressive state of genes in undifferentiated embryonic stem cells (ESCs) (PubMed:24623306). Associates at promoter regions of tumor suppressor genes (TSGs) leading to their gene silencing (PubMed:24623306). |
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 (PubMed:24623306). Also required to maintain a transcriptionally repressive state of genes in undifferentiated embryonic stem cells (ESCs) (PubMed:24623306). Associates at promoter regions of tumor suppressor genes (TSGs) leading to their gene silencing (PubMed:24623306).
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Domain Profile |
HMT SUV39
SUV39.txt 1 vrLqvfktenkGwGvrclddiakgsFvciyaGeiltddeaekegleegdeyladldskesvenlkegyesdvplssdss........... 79 vrLq+fkt+nkGwG+rclddiakgsFvciyaG+iltdd+a+kegle+gdey+a+ld++esven+kegyesd+p+ssdss ENSP00000271640.5 803 VRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDAPCSSDSSgvdlkdqedgn 892 79**************************************************************************************** PP SUV39.txt 80 .......................................................................................... 79 ENSP00000271640.5 893 sgtedpeesnddssddnfckdedfstssvwrsyatrrqtrgqkenglsettskdshppdlgpphipvppsipvggcnppsseetpknkva 982 ****************************************************************************************** PP SUV39.txt 80 .......................................................................................... 79 ENSP00000271640.5 983 swlscnsvseggfadsdshssfktneggegraggsrmeaekastsglgikdegdikqakkedtddrnkmsvvtessrnygynpspvkpeg 1072 ****************************************************************************************** PP SUV39.txt 80 .......................................................................................... 79 ENSP00000271640.5 1073 lrrppsktsmhqsrrlmasaqsnpddvltlssstesegesgtsrkptagqtsatavdsddiqtissgsegddfedkknmtgpmkrqvavk 1162 ****************************************************************************************** PP SUV39.txt 80 .................................ntrqekdkeeseyiidakkegnvgrflnHscspNlfvqnvfvdthdlrfprvafFas 136 ntrq++d+ees+yiidak egn+gr+lnHscspNlfvqnvfvdthdlrfp+vafFas ENSP00000271640.5 1163 strgfalksthgiaikstnmasvdkgesapvrkNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFAS 1252 ****************************************************************************************** PP SUV39.txt 137 krikagtELtwdYg 150 kri+agtELtwdY+ ENSP00000271640.5 1253 KRIRAGTELTWDYN 1266 *************7 PP
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Protein Sequence (Fasta) | MSSLPGCIGL DAATATVESE EIAELQQAVV 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 TGTQFKPVEP PQPTAPPAPP FPPAPPLSPQ AGDSDLESQL 480 AQSRKQVAKK STSFRPGSVG SGHSSPTSPA LSENVSGGKP GINQTYRSPL GSTASAPAPS 540 ALPAPPAPPV FHGMLERAPA EPSYRAPMEK LFYLPHVCSY TCLSRVRPMR NEQYRGKNPL 600 LVPLLYDFRR MTARRRVNRK MGFHVIYKTP CGLCLRTMQE IERYLFETGC DFLFLEMFCL 660 DPYVLVDRKF QPYKPFYYIL DITYGKEDVP LSCVNEIDTT PPPQVAYSKE RIPGKGVFIN 720 TGPEFLVGCD CKDGCRDKSK CACHQLTIQA TACTPGGQIN PNSGYQYKRL EECLPTGVYE 780 CNKRCKCDPN MCTNRLVQHG LQVRLQLFKT QNKGWGIRCL DDIAKGSFVC IYAGKILTDD 840 FADKEGLEMG DEYFANLDHI ESVENFKEGY ESDAPCSSDS SGVDLKDQED GNSGTEDPEE 900 SNDDSSDDNF CKDEDFSTSS VWRSYATRRQ TRGQKENGLS ETTSKDSHPP DLGPPHIPVP 960 PSIPVGGCNP PSSEETPKNK VASWLSCNSV SEGGFADSDS HSSFKTNEGG EGRAGGSRME 1020 AEKASTSGLG IKDEGDIKQA KKEDTDDRNK MSVVTESSRN YGYNPSPVKP EGLRRPPSKT 1080 SMHQSRRLMA SAQSNPDDVL TLSSSTESEG ESGTSRKPTA GQTSATAVDS DDIQTISSGS 1140 EGDDFEDKKN MTGPMKRQVA VKSTRGFALK STHGIAIKST NMASVDKGES APVRKNTRQF 1200 YDGEESCYII DAKLEGNLGR YLNHSCSPNL FVQNVFVDTH DLRFPWVAFF ASKRIRAGTE 1260 LTWDYNYEVG SVEGKELLCC CGAIECRGRL L 1291Protein Fasta Sequence
>ENSP00000271640.5|SETDB1;ESET;KG1T;KMT1E;TDRD21;H3-K9-HMTase4|Homo sapiens MSSLPGCIGLDAATATVESEEIAELQQAVVEELGISMEELRHFIDEELEKMDCVQQRKKQLAELETWVIQKESEVAHVDQLFDDASRAVTNCESLVKDFYSKLGLQYRDSSSEDESSRPTEIIEIPDEDDDVLSIDSGDAGSRTPKDQKLREAMAALRKSAQDVQKFMDAVNKKSSSQDLHKGTLSQMSGELSKDGDLIVSMRILGKKRTKTWHKGTLIAIQTVGPGKKYKVKFDNKGKSLLSGNHIAYDYHPPADKLYVGSRVVAKYKDGNQVWLYAGIVAETPNVKNKLRFLIFFDDGYASYVTQSELYPICRPLKKTWEDIEDISCRDFIEEYVTAYPNRPMVLLKSGQLIKTEWEGTWWKSRVEEVDGSLVRILFLDDKRCEWIYRGSTRLEPMFSMKTSSASALEKKQGQLRTRPNMGAVRSKGPVVQYTQDLTGTGTQFKPVEPPQPTAPPAPPFPPAPPLSPQAGDSDLESQLAQSRKQVAKKSTSFRPGSVGSGHSSPTSPALSENVSGGKPGINQTYRSPLGSTASAPAPSALPAPPAPPVFHGMLERAPAEPSYRAPMEKLFYLPHVCSYTCLSRVRPMRNEQYRGKNPLLVPLLYDFRRMTARRRVNRKMGFHVIYKTPCGLCLRTMQEIERYLFETGCDFLFLEMFCLDPYVLVDRKFQPYKPFYYILDITYGKEDVPLSCVNEIDTTPPPQVAYSKERIPGKGVFINTGPEFLVGCDCKDGCRDKSKCACHQLTIQATACTPGGQINPNSGYQYKRLEECLPTGVYECNKRCKCDPNMCTNRLVQHGLQVRLQLFKTQNKGWGIRCLDDIAKGSFVCIYAGKILTDDFADKEGLEMGDEYFANLDHIESVENFKEGYESDAPCSSDSSGVDLKDQEDGNSGTEDPEESNDDSSDDNFCKDEDFSTSSVWRSYATRRQTRGQKENGLSETTSKDSHPPDLGPPHIPVPPSIPVGGCNPPSSEETPKNKVASWLSCNSVSEGGFADSDSHSSFKTNEGGEGRAGGSRMEAEKASTSGLGIKDEGDIKQAKKEDTDDRNKMSVVTESSRNYGYNPSPVKPEGLRRPPSKTSMHQSRRLMASAQSNPDDVLTLSSSTESEGESGTSRKPTAGQTSATAVDSDDIQTISSGSEGDDFEDKKNMTGPMKRQVAVKSTRGFALKSTHGIAIKSTNMASVDKGESAPVRKNTRQFYDGEESCYIIDAKLEGNLGRYLNHSCSPNLFVQNVFVDTHDLRFPWVAFFASKRIRAGTELTWDYNYEVGSVEGKELLCCCGAIECRGRLL
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Nucleotide Sequence (Fasta) | GGCACTAAAG GTTTGCTTCC GGGCGTTTCT TTTGCTTCCC CTTCCCTCTT TCACGCTTCC 60 TCCCCTCCCC CTCCTCCCTT ATCCCTTCGC TTTCGCTCTT TTCCGTCGAG GCCGACCCCT 120 GAGTTGTGAG TCTGGGGTCT GGTTGGTGAA AAAGAGCCCT TGAAGCTGGA AGACGGGAGA 180 GGACAAAAGC ATGTCTTCCC TTCCTGGGTG CATTGGTTTG GATGCAGCAA CAGCTACAGT 240 GGAGTCTGAA GAGATTGCAG AGCTGCAACA GGCAGTGGTT GAGGAACTGG GTATCTCTAT 300 GGAGGAACTT CGGCATTTCA TCGATGAGGA ACTGGAGAAG ATGGATTGTG TACAGCAACG 360 CAAGAAGCAG CTAGCAGAGT TAGAGACATG GGTAATACAG AAAGAATCTG AGGTGGCTCA 420 CGTTGACCAA CTCTTTGATG ATGCATCCAG GGCAGTGACT AATTGTGAGT CTTTGGTGAA 480 GGACTTCTAC TCCAAGCTGG GACTACAATA CCGGGACAGT AGCTCTGAGG ACGAATCTTC 540 CCGGCCTACA GAAATAATTG AGATTCCTGA TGAAGATGAT GATGTCCTCA GTATTGATTC 600 AGGTGATGCT GGGAGCAGAA CTCCAAAAGA CCAGAAGCTC CGTGAAGCTA TGGCTGCCTT 660 AAGAAAGTCA GCTCAAGATG TTCAGAAGTT CATGGATGCT GTCAACAAGA AGAGCAGTTC 720 CCAGGATCTG 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 GTCGGAACTG TATCCCATTT GCCGGCCACT 1140 GAAAAAGACT TGGGAGGACA 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 GACAGCTCAG 1440 GACACGTCCA AATATGGGTG CTGTGAGGAG CAAAGGCCCT GTTGTCCAGT ACACACAGGA 1500 TCTGACCGGT ACTGGAACCC AGTTCAAGCC AGTGGAACCC 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 AGACATATAG ATCACCTTTA GGCTCCACAG CCTCTGCCCC 1800 AGCACCCTCA GCACTCCCGG CCCCTCCAGC ACCCCCAGTC TTCCATGGCA TGCTGGAGCG 1860 GGCCCCAGCA GAGCCCTCCT ACCGTGCTCC CATGGAGAAG CTTTTCTACT TACCTCATGT 1920 CTGCAGCTAT ACCTGTCTGT CTCGAGTCAG ACCTATGAGG AATGAGCAGT ACCGGGGCAA 1980 GAACCCTCTG CTGGTCCCGT TACTATATGA CTTCCGGCGG ATGACAGCCC GGCGTCGAGT 2040 TAACCGCAAG ATGGGCTTTC ATGTTATCTA TAAGACACCT TGTGGTCTCT GCCTTCGGAC 2100 AATGCAGGAG ATAGAACGCT ACCTTTTCGA GACTGGCTGT GACTTCCTCT TCCTGGAGAT 2160 GTTCTGTTTG GATCCATATG TTCTTGTGGA CCGAAAGTTT CAGCCCTATA AGCCTTTTTA 2220 CTATATTTTG GACATCACTT ATGGGAAGGA AGATGTTCCC CTATCCTGTG TCAATGAGAT 2280 TGACACAACC CCTCCACCCC AGGTGGCCTA CAGCAAGGAA CGTATCCCGG GCAAGGGTGT 2340 TTTCATTAAC ACAGGCCCTG AATTTCTGGT TGGCTGTGAC TGCAAGGATG GGTGTCGGGA 2400 CAAGTCCAAG TGTGCCTGCC ATCAACTAAC TATCCAGGCT ACAGCCTGTA CCCCAGGAGG 2460 CCAAATCAAC CCTAACTCTG GCTACCAGTA CAAGAGACTA GAAGAGTGTC TACCCACAGG 2520 GGTATATGAG TGTAACAAAC GCTGCAAATG TGACCCAAAC ATGTGCACAA ACCGGTTGGT 2580 GCAACATGGA CTACAAGTTC GGCTACAGCT ATTCAAGACA CAGAACAAGG GCTGGGGTAT 2640 CCGCTGCTTG GATGACATTG CCAAAGGCTC TTTTGTTTGT ATTTATGCAG GCAAAATCCT 2700 GACAGATGAC TTTGCAGACA AGGAGGGTCT GGAAATGGGT GATGAGTACT TTGCAAATCT 2760 GGACCATATC GAGAGCGTGG AGAACTTCAA AGAAGGATAT GAGAGTGATG CCCCCTGTTC 2820 CTCTGACAGC AGTGGTGTAG ACTTGAAGGA CCAGGAAGAT GGCAACAGCG GTACAGAGGA 2880 CCCTGAAGAG TCCAATGATG ATAGCTCAGA TGATAACTTC TGTAAGGATG AGGACTTCAG 2940 CACCAGTTCA GTGTGGCGGA GCTATGCTAC CCGGAGGCAG ACCCGGGGCC AGAAAGAGAA 3000 CGGACTCTCT GAGACAACTT CCAAGGACTC CCACCCCCCA GATCTTGGAC CCCCACATAT 3060 TCCTGTTCCT CCCTCAATCC CTGTAGGTGG CTGCAATCCA CCTTCCTCCG AAGAGACACC 3120 CAAGAACAAG GTGGCCTCAT GGTTGAGCTG CAATAGTGTC AGTGAAGGTG GTTTTGCTGA 3180 CTCTGATAGC CATTCATCCT TCAAGACTAA TGAAGGTGGG GAGGGCCGGG CTGGGGGAAG 3240 CCGAATGGAG GCTGAGAAGG CCTCCACCTC AGGACTAGGC ATCAAGGATG AGGGAGACAT 3300 CAAACAGGCC AAGAAAGAGG ACACTGACGA CCGAAACAAG ATGTCAGTAG TTACTGAAAG 3360 CTCTCGAAAT TACGGTTACA ATCCTTCTCC TGTGAAGCCT GAAGGACTTC GCCGCCCACC 3420 TAGTAAGACT AGTATGCATC AAAGCCGAAG ACTCATGGCT TCTGCTCAGT CCAACCCTGA 3480 TGATGTCCTG ACACTGTCCA GCAGCACAGA AAGTGAGGGG GAAAGTGGGA CCAGCCGAAA 3540 GCCCACTGCT GGTCAGACTT CGGCTACAGC GGTTGACAGT GATGATATCC AGACCATATC 3600 CTCTGGCTCT GAAGGGGATG ACTTTGAGGA CAAGAAGAAC ATGACTGGTC CAATGAAGCG 3660 TCAAGTGGCA GTAAAATCAA CCCGAGGCTT TGCTCTTAAA TCAACCCATG GGATTGCAAT 3720 TAAATCAACC AACATGGCCT CTGTGGACAA GGGGGAGAGC GCACCTGTTC GTAAGAACAC 3780 ACGCCAATTC TATGATGGCG AGGAGTCTTG CTACATCATT GATGCCAAGC TTGAAGGCAA 3840 CCTGGGCCGC TACCTCAACC ACAGTTGCAG CCCCAACCTG TTTGTCCAGA ATGTCTTCGT 3900 GGATACCCAT GATCTTCGCT TCCCCTGGGT GGCCTTCTTT GCCAGCAAAA GAATCCGGGC 3960 TGGGACAGAA CTTACTTGGG ACTACAACTA CGAGGTGGGC AGTGTGGAAG GCAAGGAGCT 4020 ACTCTGTTGC TGTGGGGCCA TTGAATGCAG AGGACGTCTT CTTTAGAGGA CAGCCTTCTT 4080 CCCAACCCTT CTTGAACTGT CGTTTCCTCA GGAACTGGGT CTTCCTGATT GTTGAACCCT 4140 GACCCGAAGT CTCTGGGCTA GCTACTCCCC CCAGCTCCTA GTTGATAGAA ATGGGGGTTC 4200 TGGACCAGAT GATCCCTTCC AATGTGGTGC TAGCAGGCAG GATCCCTTCT CCACCTCCAA 4260 AGGCCCTAAA GGGTGGGGAG AGATCACCAC TCTAACCTCG GCCTGACATC CCTCCCATCC 4320 CATATTTGTC CAAGTGTTCC TGCTTCTAAC AGACTTTGTT CTTAGAATGG AGCCTGTGTA 4380 TCTACTATCT CCAGTTTGTA TTATTTCTTG AAAGTCTTTT AACAATATGA TAAAACT
4438Nucleotide Fasta Sequence
>ENSP00000271640.5|SUV39|Homo sapiens GGCACTAAAGGTTTGCTTCCGGGCGTTTCTTTTGCTTCCCCTTCCCTCTTTCACGCTTCCTCCCCTCCCCCTCCTCCCTTATCCCTTCGCTTTCGCTCTTTTCCGTCGAGGCCGACCCCTGAGTTGTGAGTCTGGGGTCTGGTTGGTGAAAAAGAGCCCTTGAAGCTGGAAGACGGGAGAGGACAAAAGCATGTCTTCCCTTCCTGGGTGCATTGGTTTGGATGCAGCAACAGCTACAGTGGAGTCTGAAGAGATTGCAGAGCTGCAACAGGCAGTGGTTGAGGAACTGGGTATCTCTATGGAGGAACTTCGGCATTTCATCGATGAGGAACTGGAGAAGATGGATTGTGTACAGCAACGCAAGAAGCAGCTAGCAGAGTTAGAGACATGGGTAATACAGAAAGAATCTGAGGTGGCTCACGTTGACCAACTCTTTGATGATGCATCCAGGGCAGTGACTAATTGTGAGTCTTTGGTGAAGGACTTCTACTCCAAGCTGGGACTACAATACCGGGACAGTAGCTCTGAGGACGAATCTTCCCGGCCTACAGAAATAATTGAGATTCCTGATGAAGATGATGATGTCCTCAGTATTGATTCAGGTGATGCTGGGAGCAGAACTCCAAAAGACCAGAAGCTCCGTGAAGCTATGGCTGCCTTAAGAAAGTCAGCTCAAGATGTTCAGAAGTTCATGGATGCTGTCAACAAGAAGAGCAGTTCCCAGGATCTGCATAAAGGAACCTTGAGTCAGATGTCTGGAGAACTAAGCAAAGATGGTGACCTGATAGTCAGCATGCGAATTCTGGGCAAGAAGAGAACTAAGACTTGGCACAAAGGCACCCTTATTGCCATCCAGACAGTTGGGCCAGGGAAGAAATACAAGGTGAAATTTGACAACAAAGGAAAGAGTCTACTGTCGGGGAACCATATTGCCTATGATTACCACCCTCCTGCTGACAAGCTGTATGTGGGCAGTCGGGTGGTCGCCAAATACAAAGATGGGAATCAGGTCTGGCTCTATGCTGGCATTGTAGCTGAGACACCAAACGTCAAAAACAAGCTCAGGTTTCTCATTTTCTTTGATGATGGCTATGCTTCCTATGTCACACAGTCGGAACTGTATCCCATTTGCCGGCCACTGAAAAAGACTTGGGAGGACATAGAAGACATCTCCTGCCGTGACTTCATAGAGGAGTATGTCACTGCCTACCCCAACCGCCCCATGGTACTGCTCAAGAGTGGCCAGCTTATCAAGACTGAGTGGGAAGGCACGTGGTGGAAGTCCCGAGTTGAGGAGGTGGATGGCAGCCTAGTCAGGATCCTCTTCCTGGATGACAAAAGATGTGAGTGGATCTATCGAGGCTCTACACGGCTGGAGCCCATGTTCAGCATGAAAACATCCTCAGCCTCTGCACTGGAGAAGAAGCAAGGACAGCTCAGGACACGTCCAAATATGGGTGCTGTGAGGAGCAAAGGCCCTGTTGTCCAGTACACACAGGATCTGACCGGTACTGGAACCCAGTTCAAGCCAGTGGAACCCCCACAGCCTACAGCTCCACCTGCCCCACCTTTCCCACCTGCTCCACCTCTATCCCCCCAAGCAGGTGACAGTGACTTGGAAAGCCAGCTTGCCCAGTCACGGAAGCAGGTAGCCAAAAAGAGCACGTCCTTTCGACCAGGATCTGTGGGCTCTGGTCATTCCTCCCCTACATCTCCTGCACTCAGTGAAAATGTCTCTGGTGGGAAACCTGGGATCAACCAGACATATAGATCACCTTTAGGCTCCACAGCCTCTGCCCCAGCACCCTCAGCACTCCCGGCCCCTCCAGCACCCCCAGTCTTCCATGGCATGCTGGAGCGGGCCCCAGCAGAGCCCTCCTACCGTGCTCCCATGGAGAAGCTTTTCTACTTACCTCATGTCTGCAGCTATACCTGTCTGTCTCGAGTCAGACCTATGAGGAATGAGCAGTACCGGGGCAAGAACCCTCTGCTGGTCCCGTTACTATATGACTTCCGGCGGATGACAGCCCGGCGTCGAGTTAACCGCAAGATGGGCTTTCATGTTATCTATAAGACACCTTGTGGTCTCTGCCTTCGGACAATGCAGGAGATAGAACGCTACCTTTTCGAGACTGGCTGTGACTTCCTCTTCCTGGAGATGTTCTGTTTGGATCCATATGTTCTTGTGGACCGAAAGTTTCAGCCCTATAAGCCTTTTTACTATATTTTGGACATCACTTATGGGAAGGAAGATGTTCCCCTATCCTGTGTCAATGAGATTGACACAACCCCTCCACCCCAGGTGGCCTACAGCAAGGAACGTATCCCGGGCAAGGGTGTTTTCATTAACACAGGCCCTGAATTTCTGGTTGGCTGTGACTGCAAGGATGGGTGTCGGGACAAGTCCAAGTGTGCCTGCCATCAACTAACTATCCAGGCTACAGCCTGTACCCCAGGAGGCCAAATCAACCCTAACTCTGGCTACCAGTACAAGAGACTAGAAGAGTGTCTACCCACAGGGGTATATGAGTGTAACAAACGCTGCAAATGTGACCCAAACATGTGCACAAACCGGTTGGTGCAACATGGACTACAAGTTCGGCTACAGCTATTCAAGACACAGAACAAGGGCTGGGGTATCCGCTGCTTGGATGACATTGCCAAAGGCTCTTTTGTTTGTATTTATGCAGGCAAAATCCTGACAGATGACTTTGCAGACAAGGAGGGTCTGGAAATGGGTGATGAGTACTTTGCAAATCTGGACCATATCGAGAGCGTGGAGAACTTCAAAGAAGGATATGAGAGTGATGCCCCCTGTTCCTCTGACAGCAGTGGTGTAGACTTGAAGGACCAGGAAGATGGCAACAGCGGTACAGAGGACCCTGAAGAGTCCAATGATGATAGCTCAGATGATAACTTCTGTAAGGATGAGGACTTCAGCACCAGTTCAGTGTGGCGGAGCTATGCTACCCGGAGGCAGACCCGGGGCCAGAAAGAGAACGGACTCTCTGAGACAACTTCCAAGGACTCCCACCCCCCAGATCTTGGACCCCCACATATTCCTGTTCCTCCCTCAATCCCTGTAGGTGGCTGCAATCCACCTTCCTCCGAAGAGACACCCAAGAACAAGGTGGCCTCATGGTTGAGCTGCAATAGTGTCAGTGAAGGTGGTTTTGCTGACTCTGATAGCCATTCATCCTTCAAGACTAATGAAGGTGGGGAGGGCCGGGCTGGGGGAAGCCGAATGGAGGCTGAGAAGGCCTCCACCTCAGGACTAGGCATCAAGGATGAGGGAGACATCAAACAGGCCAAGAAAGAGGACACTGACGACCGAAACAAGATGTCAGTAGTTACTGAAAGCTCTCGAAATTACGGTTACAATCCTTCTCCTGTGAAGCCTGAAGGACTTCGCCGCCCACCTAGTAAGACTAGTATGCATCAAAGCCGAAGACTCATGGCTTCTGCTCAGTCCAACCCTGATGATGTCCTGACACTGTCCAGCAGCACAGAAAGTGAGGGGGAAAGTGGGACCAGCCGAAAGCCCACTGCTGGTCAGACTTCGGCTACAGCGGTTGACAGTGATGATATCCAGACCATATCCTCTGGCTCTGAAGGGGATGACTTTGAGGACAAGAAGAACATGACTGGTCCAATGAAGCGTCAAGTGGCAGTAAAATCAACCCGAGGCTTTGCTCTTAAATCAACCCATGGGATTGCAATTAAATCAACCAACATGGCCTCTGTGGACAAGGGGGAGAGCGCACCTGTTCGTAAGAACACACGCCAATTCTATGATGGCGAGGAGTCTTGCTACATCATTGATGCCAAGCTTGAAGGCAACCTGGGCCGCTACCTCAACCACAGTTGCAGCCCCAACCTGTTTGTCCAGAATGTCTTCGTGGATACCCATGATCTTCGCTTCCCCTGGGTGGCCTTCTTTGCCAGCAAAAGAATCCGGGCTGGGACAGAACTTACTTGGGACTACAACTACGAGGTGGGCAGTGTGGAAGGCAAGGAGCTACTCTGTTGCTGTGGGGCCATTGAATGCAGAGGACGTCTTCTTTAGAGGACAGCCTTCTTCCCAACCCTTCTTGAACTGTCGTTTCCTCAGGAACTGGGTCTTCCTGATTGTTGAACCCTGACCCGAAGTCTCTGGGCTAGCTACTCCCCCCAGCTCCTAGTTGATAGAAATGGGGGTTCTGGACCAGATGATCCCTTCCAATGTGGTGCTAGCAGGCAGGATCCCTTCTCCACCTCCAAAGGCCCTAAAGGGTGGGGAGAGATCACCACTCTAACCTCGGCCTGACATCCCTCCCATCCCATATTTGTCCAAGTGTTCCTGCTTCTAACAGACTTTGTTCTTAGAATGGAGCCTGTGTATCTACTATCTCCAGTTTGTATTATTTCTTGAAAGTCTTTTAACAATATGATAAAACT
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Sequence Source |
Ensembl |
Keyword |
KW-0002--3D-structure 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-0621--Polymorphism 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:0090309--P:positive regulation of methylation-dependent chromatin silencing GO:0007265--P:Ras protein signal transduction GO:0045471--P:response to ethanol GO:0033273--P:response to vitamin GO:0006351--P:transcription, DNA-templated
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Orthology |
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Created Date |
25-Jun-2016 |