Tag |
Content |
WERAM ID |
WERAM-Drm-0004 |
Ensembl Protein ID |
FBpp0076008 |
Uniprot Accession |
P42124; EZ_DROME; B7Z0G2; Q9VTA3 |
Genbank Protein ID |
NP_001137932.1; NP_524021.2 |
Protein Name |
Histone-lysine N-methyltransferase E(z) |
Genbank Nucleotide ID |
NM_001144460.3; NM_079297.3 |
Gene Name |
EZ;KMT6;CG6502 |
Ensembl Information |
|
Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
HMT |
EZ |
SET |
H3K9; H3K27 |
K |
12697833 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HMT |
EZ |
1.30e-63 |
212.9 |
626 |
741 |
HMT |
SET1 |
1.90e-40 |
138.2 |
626 |
741 |
|
Organism |
Drosophila melanogaster |
NCBI Taxa ID |
7227 |
Functional Description (View)Functional Description
Polycomb group (PcG) protein. Catalytic subunit of the Esc/E(z) complex, which methylates 'Lys-9' and 'Lys-27' of histone H3, leading to transcriptional repression of the affected target gene. While PcG proteins are generally required to maintain the transcriptionally repressive state of homeotic genes throughout development, this protein is specifically required during the first 6 hours of embryogenesis to establish the repressed state. The Esc/E(z) complex is necessary but not sufficient for the repression of homeotic target genes, suggesting that the recruitment of the distinct PRC1 complex is also required. |
Polycomb group (PcG) protein. Catalytic subunit of the Esc/E(z) complex, which methylates 'Lys-9' and 'Lys-27' of histone H3, leading to transcriptional repression of the affected target gene. While PcG proteins are generally required to maintain the transcriptionally repressive state of homeotic genes throughout development, this protein is specifically required during the first 6 hours of embryogenesis to establish the repressed state. The Esc/E(z) complex is necessary but not sufficient for the repression of homeotic target genes, suggesting that the recruitment of the distinct PRC1 complex is also required.
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Domain Profile |
HMT EZ
EZ.txt 1 krillgksdvaGwGlflkesvekneylgeytGelisddeadkrGkiydrakssflfnlndqlvidakrkGnklkfanhsakpncyakvllvaGdhriG 98 k++l+++sd+aGwG+flke+++kne+++ey+Ge+is+dead+rGk+yd++++sflfnln+++v+da+rkGnk++fanhs++pncyakv++v+GdhriG FBpp0076008 626 KHLLMAPSDIAGWGIFLKEGAQKNEFISEYCGEIISQDEADRRGKVYDKYMCSFLFNLNNDFVVDATRKGNKIRFANHSINPNCYAKVMMVTGDHRIG 723 789*********************************************************************************************** PP EZ.txt 99 lfakrrieaseelffdyr 116 +fakr+i+ +eelffdyr FBpp0076008 724 IFAKRAIQPGEELFFDYR 741 *****************7 PP
HMT SET1
SET1.txt 1 kelevakskikglglvakkeiekeelviEYvGevirsevadkrekeyekkeigvylfrldedaevvvdatkkgniarfinhscepNceakvvavdgek 98 k+l +a s+i+g+g++ k+ +k+e++ EY+Ge+i++++ad+r k y+k+ + ++lf+l++d +vvdat+kgn++rf nhs +pNc+akv++v g++ FBpp0076008 626 KHLLMAPSDIAGWGIFLKEGAQKNEFISEYCGEIISQDEADRRGKVYDKY-MCSFLFNLNND--FVVDATRKGNKIRFANHSINPNCYAKVMMVTGDH 720 678999*******************************************9.456********..********************************** PP SET1.txt 99 kiviyakraIekgeeltydYk 119 +i+i+akraI+ geel++dY+ FBpp0076008 721 RIGIFAKRAIQPGEELFFDYR 741 ********************6 PP
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Protein Sequence (Fasta) | MNSTKVPPEW KRRVKSEYIK IRQQKRYKRA DEIKEAWIRN WDEHNHNVQD LYCESKVWQA 60 KPYDPPHVDC VKRAEVTSYN GIPSGPQKVP ICVINAVTPI PTMYTWAPTQ QNFMVEDETV 120 LHNIPYMGDE VLDKDGKFIE ELIKNYDGKV HGDKDPSFMD DAIFVELVHA LMRSYSKELE 180 EAAPGTATAI KTETLAKSKQ GEDDGVVDVD ADGESPMKLE KTDSKGDLTE VEKKETEEPL 240 ETEDADVKPD VEEVKDKLPF PAPIIFQAIS ANFPDKGTAQ ELKEKYIELT EHQDPERPQE 300 CTPNIDGIKA ESVSRERTMH SFHTLFCRRC FKYDCFLHRL QGHAGPNLQK RRYPELKPFA 360 EPCSNSCYML IDGMKEKLAA DSKTPPIDSC NEASSEDSND SNSQFSNKDF NHENSKDNGL 420 TVNSAAVAEI NSIMAGMMNI TSTQCVWTGA DQALYRVLHK VYLKNYCAIA HNMLTKTCRQ 480 VYEFAQKEDA EFSFEDLRQD FTPPRKKKKK QRLWSLHCRK IQLKKDSSSN HVYNYTPCDH 540 PGHPCDMNCS CIQTQNFCEK FCNCSSDCQN RFPGCRCKAQ CNTKQCPCYL AVRECDPDLC 600 QACGADQFKL TKITCKNVCV QRGLHKHLLM APSDIAGWGI FLKEGAQKNE FISEYCGEII 660 SQDEADRRGK VYDKYMCSFL FNLNNDFVVD ATRKGNKIRF ANHSINPNCY AKVMMVTGDH 720 RIGIFAKRAI QPGEELFFDY RYGPTEQLKF VGIEREMEIV Protein Fasta Sequence
>FBpp0076008|EZ;KMT6;CG6502|Drosophila melanogaster MNSTKVPPEWKRRVKSEYIKIRQQKRYKRADEIKEAWIRNWDEHNHNVQDLYCESKVWQAKPYDPPHVDCVKRAEVTSYNGIPSGPQKVPICVINAVTPIPTMYTWAPTQQNFMVEDETVLHNIPYMGDEVLDKDGKFIEELIKNYDGKVHGDKDPSFMDDAIFVELVHALMRSYSKELEEAAPGTATAIKTETLAKSKQGEDDGVVDVDADGESPMKLEKTDSKGDLTEVEKKETEEPLETEDADVKPDVEEVKDKLPFPAPIIFQAISANFPDKGTAQELKEKYIELTEHQDPERPQECTPNIDGIKAESVSRERTMHSFHTLFCRRCFKYDCFLHRLQGHAGPNLQKRRYPELKPFAEPCSNSCYMLIDGMKEKLAADSKTPPIDSCNEASSEDSNDSNSQFSNKDFNHENSKDNGLTVNSAAVAEINSIMAGMMNITSTQCVWTGADQALYRVLHKVYLKNYCAIAHNMLTKTCRQVYEFAQKEDAEFSFEDLRQDFTPPRKKKKKQRLWSLHCRKIQLKKDSSSNHVYNYTPCDHPGHPCDMNCSCIQTQNFCEKFCNCSSDCQNRFPGCRCKAQCNTKQCPCYLAVRECDPDLCQACGADQFKLTKITCKNVCVQRGLHKHLLMAPSDIAGWGIFLKEGAQKNEFISEYCGEIISQDEADRRGKVYDKYMCSFLFNLNNDFVVDATRKGNKIRFANHSINPNCYAKVMMVTGDHRIGIFAKRAIQPGEELFFDYRYGPTEQLKFVGIEREMEIV
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Nucleotide Sequence (Fasta) | CAACACTACA CAAAGCAGGG TCGTACCAAA GAGGGGCTCT TTGTTTATTT CCTACTTTCA 60 GTACAAAATG GTTGTATAGC TAATTTAAAT TTTTATTATA ATATAAATAT AATTAATGGC 120 TTACCGGACA AATTAAGTAC CCACTAAATG GTCTTCTACA TACACCCATG TGTCTAAGTT 180 ATTCTTCCTG CAGTACAACG GTCACACTGC GGCAGCTGTT GCAAAAAAAG GCGGATAATA 240 TTTGTAGCAA AATCAGTGTT TTTTATACGT AAAATCAACA AATATAAAGT CCCTCGAAGG 300 CATTATGAAT AGCACTAAAG TGCCGCCCGA GTGGAAGAGG CGTGTCAAGT CGGAGTACAT 360 CAAAATCAGG CAGCAGAAGC GCTACAAACG TGCCGACGAG ATCAAGGAGG CGTGGATAAG 420 AAACTGGGAC GAGCACAACC ACAATGTACA GGATCTGTAC TGCGAGTCGA AGGTTTGGCA 480 GGCTAAACCC TACGATCCGC CGCATGTGGA CTGTGTGAAG CGGGCGGAGG TGACTAGCTA 540 CAATGGCATT CCCAGCGGTC CGCAAAAGGT GCCCATTTGC GTGATCAACG CGGTCACTCC 600 CATACCCACC ATGTACACGT GGGCACCAAC ACAGCAGAAC TTCATGGTGG AGGATGAGAC 660 GGTGCTGCAC AATATACCCT ATATGGGCGA CGAGGTCCTC GATAAGGATG GCAAGTTCAT 720 AGAGGAACTG ATCAAAAACT ACGATGGCAA GGTTCACGGC GACAAGGATC CCTCGTTCAT 780 GGACGATGCC ATCTTCGTAG AACTGGTGCA CGCCCTTATG CGCTCCTACA GCAAGGAACT 840 GGAGGAAGCC GCTCCGGGTA CAGCGACTGC CATTAAAACA GAGACGTTGG CGAAATCAAA 900 ACAGGGCGAA GATGATGGGG TAGTTGATGT TGACGCAGAT GGTGAATCTC CCATGAAGCT 960 TGAGAAAACC GACAGCAAAG GGGATCTGAC TGAAGTTGAG AAGAAGGAAA CTGAAGAACC 1020 GCTGGAGACT GAAGATGCGG ATGTTAAGCC CGATGTGGAA GAAGTCAAGG ACAAGCTGCC 1080 CTTCCCTGCG CCCATTATTT TTCAGGCCAT CAGCGCTAAC TTTCCAGACA AGGGCACCGC 1140 GCAAGAGCTC AAAGAAAAGT ACATTGAGCT TACGGAGCAC CAGGATCCGG AGCGCCCACA 1200 GGAGTGCACA CCCAACATTG ACGGCATCAA GGCCGAGAGC GTTTCCCGGG AAAGGACTAT 1260 GCACTCCTTT CACACGCTCT TCTGTCGTCG TTGCTTCAAA TACGACTGCT TCCTGCACCG 1320 CTTGCAAGGA CATGCGGGTC CCAATCTCCA GAAGCGTCGC TATCCGGAAC TGAAGCCTTT 1380 CGCCGAACCT TGCAGCAACT CCTGCTACAT GTTGATCGAT GGCATGAAGG AAAAGCTGGC 1440 GGCCGATAGC AAGACACCTC CCATTGATTC CTGCAATGAG GCCAGCTCCG AGGACAGTAA 1500 TGACAGCAAC AGTCAGTTTA GCAACAAGGA CTTTAATCAT GAGAATAGCA AGGATAATGG 1560 CCTGACTGTA AATAGCGCCG CTGTGGCTGA GATCAACTCC ATTATGGCTG GCATGATGAA 1620 CATCACCAGT ACGCAGTGCG TTTGGACAGG CGCTGACCAA GCACTTTATC GGGTCTTGCA 1680 TAAAGTGTAT TTAAAGAACT ACTGCGCGAT TGCGCACAAC ATGCTGACCA AGACCTGTCG 1740 TCAGGTGTAC GAGTTTGCCC AGAAGGAGGA TGCTGAGTTT AGCTTCGAGG ATTTGCGACA 1800 GGACTTCACA CCTCCGCGCA AGAAGAAGAA GAAGCAACGT CTGTGGTCGC TGCACTGTCG 1860 TAAGATTCAG CTAAAGAAGG ACTCATCCTC GAATCACGTG TACAACTACA CGCCCTGCGA 1920 CCATCCCGGA CATCCATGCG ACATGAACTG CTCCTGCATT CAGACACAAA ACTTCTGCGA 1980 AAAGTTCTGC AACTGCAGCA GCGATTGCCA GAATCGTTTC CCCGGCTGTC GCTGCAAGGC 2040 TCAGTGCAAT ACGAAGCAGT GTCCTTGCTA TCTGGCAGTG CGCGAGTGTG ATCCCGATCT 2100 GTGCCAGGCC TGCGGAGCGG ATCAGTTTAA GCTGACCAAG ATCACGTGCA AGAACGTGTG 2160 CGTGCAGCGA GGACTGCACA AGCACCTGCT CATGGCTCCG TCTGACATCG CCGGCTGGGG 2220 CATCTTTCTT AAGGAGGGTG CGCAAAAGAA TGAGTTCATT TCGGAATATT GTGGCGAGAT 2280 CATATCCCAA GATGAAGCCG ATCGCCGTGG CAAGGTTTAC GACAAGTACA TGTGCTCATT 2340 TCTTTTCAAT CTGAACAACG ATTTTGTTGT GGATGCCACT CGGAAGGGCA ACAAGATTCG 2400 GTTTGCCAAT CATTCCATTA ATCCCAATTG CTATGCCAAG GTTATGATGG TCACCGGCGA 2460 TCATCGCATC GGCATCTTTG CCAAGCGGGC CATTCAGCCC GGCGAAGAGC TATTCTTTGA 2520 CTACAGATAC GGACCCACGG AGCAGCTGAA GTTCGTGGGC ATAGAGCGTG AAATGGAAAT 2580 TGTTTGATAA CGAGTCTACT TATGAAAATC GTATCATACA AATTGAATAA AACTATATTT 2640 TTGAAAACAC
2651Nucleotide Fasta Sequence
>FBpp0076008|SET1|Drosophila melanogaster CAACACTACACAAAGCAGGGTCGTACCAAAGAGGGGCTCTTTGTTTATTTCCTACTTTCAGTACAAAATGGTTGTATAGCTAATTTAAATTTTTATTATAATATAAATATAATTAATGGCTTACCGGACAAATTAAGTACCCACTAAATGGTCTTCTACATACACCCATGTGTCTAAGTTATTCTTCCTGCAGTACAACGGTCACACTGCGGCAGCTGTTGCAAAAAAAGGCGGATAATATTTGTAGCAAAATCAGTGTTTTTTATACGTAAAATCAACAAATATAAAGTCCCTCGAAGGCATTATGAATAGCACTAAAGTGCCGCCCGAGTGGAAGAGGCGTGTCAAGTCGGAGTACATCAAAATCAGGCAGCAGAAGCGCTACAAACGTGCCGACGAGATCAAGGAGGCGTGGATAAGAAACTGGGACGAGCACAACCACAATGTACAGGATCTGTACTGCGAGTCGAAGGTTTGGCAGGCTAAACCCTACGATCCGCCGCATGTGGACTGTGTGAAGCGGGCGGAGGTGACTAGCTACAATGGCATTCCCAGCGGTCCGCAAAAGGTGCCCATTTGCGTGATCAACGCGGTCACTCCCATACCCACCATGTACACGTGGGCACCAACACAGCAGAACTTCATGGTGGAGGATGAGACGGTGCTGCACAATATACCCTATATGGGCGACGAGGTCCTCGATAAGGATGGCAAGTTCATAGAGGAACTGATCAAAAACTACGATGGCAAGGTTCACGGCGACAAGGATCCCTCGTTCATGGACGATGCCATCTTCGTAGAACTGGTGCACGCCCTTATGCGCTCCTACAGCAAGGAACTGGAGGAAGCCGCTCCGGGTACAGCGACTGCCATTAAAACAGAGACGTTGGCGAAATCAAAACAGGGCGAAGATGATGGGGTAGTTGATGTTGACGCAGATGGTGAATCTCCCATGAAGCTTGAGAAAACCGACAGCAAAGGGGATCTGACTGAAGTTGAGAAGAAGGAAACTGAAGAACCGCTGGAGACTGAAGATGCGGATGTTAAGCCCGATGTGGAAGAAGTCAAGGACAAGCTGCCCTTCCCTGCGCCCATTATTTTTCAGGCCATCAGCGCTAACTTTCCAGACAAGGGCACCGCGCAAGAGCTCAAAGAAAAGTACATTGAGCTTACGGAGCACCAGGATCCGGAGCGCCCACAGGAGTGCACACCCAACATTGACGGCATCAAGGCCGAGAGCGTTTCCCGGGAAAGGACTATGCACTCCTTTCACACGCTCTTCTGTCGTCGTTGCTTCAAATACGACTGCTTCCTGCACCGCTTGCAAGGACATGCGGGTCCCAATCTCCAGAAGCGTCGCTATCCGGAACTGAAGCCTTTCGCCGAACCTTGCAGCAACTCCTGCTACATGTTGATCGATGGCATGAAGGAAAAGCTGGCGGCCGATAGCAAGACACCTCCCATTGATTCCTGCAATGAGGCCAGCTCCGAGGACAGTAATGACAGCAACAGTCAGTTTAGCAACAAGGACTTTAATCATGAGAATAGCAAGGATAATGGCCTGACTGTAAATAGCGCCGCTGTGGCTGAGATCAACTCCATTATGGCTGGCATGATGAACATCACCAGTACGCAGTGCGTTTGGACAGGCGCTGACCAAGCACTTTATCGGGTCTTGCATAAAGTGTATTTAAAGAACTACTGCGCGATTGCGCACAACATGCTGACCAAGACCTGTCGTCAGGTGTACGAGTTTGCCCAGAAGGAGGATGCTGAGTTTAGCTTCGAGGATTTGCGACAGGACTTCACACCTCCGCGCAAGAAGAAGAAGAAGCAACGTCTGTGGTCGCTGCACTGTCGTAAGATTCAGCTAAAGAAGGACTCATCCTCGAATCACGTGTACAACTACACGCCCTGCGACCATCCCGGACATCCATGCGACATGAACTGCTCCTGCATTCAGACACAAAACTTCTGCGAAAAGTTCTGCAACTGCAGCAGCGATTGCCAGAATCGTTTCCCCGGCTGTCGCTGCAAGGCTCAGTGCAATACGAAGCAGTGTCCTTGCTATCTGGCAGTGCGCGAGTGTGATCCCGATCTGTGCCAGGCCTGCGGAGCGGATCAGTTTAAGCTGACCAAGATCACGTGCAAGAACGTGTGCGTGCAGCGAGGACTGCACAAGCACCTGCTCATGGCTCCGTCTGACATCGCCGGCTGGGGCATCTTTCTTAAGGAGGGTGCGCAAAAGAATGAGTTCATTTCGGAATATTGTGGCGAGATCATATCCCAAGATGAAGCCGATCGCCGTGGCAAGGTTTACGACAAGTACATGTGCTCATTTCTTTTCAATCTGAACAACGATTTTGTTGTGGATGCCACTCGGAAGGGCAACAAGATTCGGTTTGCCAATCATTCCATTAATCCCAATTGCTATGCCAAGGTTATGATGGTCACCGGCGATCATCGCATCGGCATCTTTGCCAAGCGGGCCATTCAGCCCGGCGAAGAGCTATTCTTTGACTACAGATACGGACCCACGGAGCAGCTGAAGTTCGTGGGCATAGAGCGTGAAATGGAAATTGTTTGATAACGAGTCTACTTATGAAAATCGTATCATACAAATTGAATAAAACTATATTTTTGAAAACAC
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Sequence Source |
Ensembl |
Keyword |
KW-0156--Chromatin regulator KW-0181--Complete proteome KW-0217--Developmental protein KW-0489--Methyltransferase KW-0539--Nucleus KW-0597--Phosphoprotein KW-1185--Reference proteome KW-0678--Repressor KW-0949--S-adenosyl-L-methionine KW-0804--Transcription KW-0805--Transcription regulation KW-0808--Transferase --
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Interpro |
IPR026489--CXC_dom IPR001005--SANT/Myb IPR001214--SET_dom IPR033467--Tesmin/TSO1-like_CXC
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PROSITE |
PS51633--CXC PS50280--SET
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Pfam |
PF00856--SET
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Gene Ontology |
GO:0035098--C:ESC/E(Z) complex GO:0035097--C:histone methyltransferase complex GO:0000790--C:nuclear chromatin GO:0005634--C:nucleus GO:0003677--F:DNA binding GO:0042054--F:histone methyltransferase activity GO:0046976--F:histone methyltransferase activity (H3-K27 specific) GO:0046974--F:histone methyltransferase activity (H3-K9 specific) GO:0003700--F:transcription factor activity, sequence-specific DNA binding GO:0007411--P:axon guidance GO:0006342--P:chromatin silencing GO:0006723--P:cuticle hydrocarbon biosynthetic process GO:0048813--P:dendrite morphogenesis GO:0016458--P:gene silencing GO:0070734--P:histone H3-K27 methylation GO:0051567--P:histone H3-K9 methylation GO:0016571--P:histone methylation GO:0007517--P:muscle organ development GO:0045892--P:negative regulation of transcription, DNA-templated GO:0022008--P:neurogenesis GO:0042810--P:pheromone metabolic process GO:0035186--P:syncytial blastoderm mitotic cell cycle GO:0006351--P:transcription, DNA-templated
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Orthology |
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Created Date |
25-Jun-2016 |