Tag |
Content |
WERAM ID |
WERAM-Scp-0012 |
Ensembl Protein ID |
SPAC29A4.20.1:pep |
Uniprot Accession |
O14023; ELP3_SCHPO |
Genbank Protein ID |
NP_594862.1 |
Protein Name |
Probable elongator complex protein 3 |
Genbank Nucleotide ID |
NM_001020291.2 |
Gene Name |
ELP3;SPAC29A4.20 |
Ensembl Information |
|
Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
HAT |
ELP3 |
N-acetyltransferase |
|
K |
26223950 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
HAT |
ELP3 |
4.80e-92 |
304 |
393 |
544 |
|
Organism |
Schizosaccharomyces pombe |
NCBI Taxa ID |
284812 |
Functional Description (View)Functional Description
Acts as catalytic subunit of the RNA polymerase II elongator complex, which is a major histone acetyltransferase component of the RNA polymerase II (Pol II) holoenzyme and is involved in transcriptional elongation. Association with elongating RNAPII requires a hyperphosphorylated state of the RNAPII C-terminal domain (CTD). Elongator binds to both naked and nucleosomal DNA, can acetylate both core and nucleosomal histones, and is involved in chromatin remodeling (By similarity). |
Acts as catalytic subunit of the RNA polymerase II elongator complex, which is a major histone acetyltransferase component of the RNA polymerase II (Pol II) holoenzyme and is involved in transcriptional elongation. Association with elongating RNAPII requires a hyperphosphorylated state of the RNAPII C-terminal domain (CTD). Elongator binds to both naked and nucleosomal DNA, can acetylate both core and nucleosomal histones, and is involved in chromatin remodeling (By similarity).
|
Domain Profile |
HAT ELP3
ELP3.txt 1 lkcrdvrtrevgiqeihhkvrpeqvelirrdyvanggwetflsyedpkqdiligllrlrkisektfrpelkge.vsivrelhvygsvvpvas 91 +kcrd+r+revg+qe+hhk++peqvel+rrdy+anggwetflsyedpkqdiligllrlr++s+kt+rpe++++ +s+vrelhvygs+vpv+s SPAC29A4.20.1:pep 393 TKCRDIRAREVGMQEVHHKIHPEQVELLRRDYTANGGWETFLSYEDPKQDILIGLLRLRQCSDKTYRPEFTSQpTSLVRELHVYGSAVPVHS 484 69***********************************************************************9****************** PP ELP3.txt 92 rdpkkfqhqgfgtllleeaeriareehgsekiavisgvgtreyyrklgyeldgpymsksl 151 rdpkkfqhqgfgtllleeaeria++ehgs+ki+visgvg+r+yy+klgy+ldgpymsk+l SPAC29A4.20.1:pep 485 RDPKKFQHQGFGTLLLEEAERIAKYEHGSKKISVISGVGVRKYYQKLGYTLDGPYMSKWL 544 **********************************************************97 PP
|
Protein Sequence (Fasta) | MSTSSLAFLK AKACAEIVAE LIASENQNKV INLNALKMRI SKKHQLSESP RLTDIIAAIP 60 PDAYLKESLM RKLRAKPVRT ASGIAVVAVM CKPHRCPHIA MTGNVCVYCP GGPDSDFEYS 120 TQSYTGYEPT SMRAIRARYD PYEQARGRVE QLRSLGHTVD KVEYIIMGGT FMSLPESYRH 180 TFIANLHNAL SGATTEDLDE AVKFSEQSET KCVGITIETR PDYCLDQHLD EMLRYGCTRL 240 EIGVQSVYED VARDTNRGHT VKAVCETFQL AKDTGYKVVT HMMPDLPNVG MERDIFQFQE 300 YFENPAFRTD GLKLYPTLVI RGTGLYELWK TGRYKNYTPN ALVDLIARIL ALVPPWTRIY 360 RIQRDIPMPL VSSGVETGNL RELALNRMRD LGTKCRDIRA REVGMQEVHH KIHPEQVELL 420 RRDYTANGGW ETFLSYEDPK QDILIGLLRL RQCSDKTYRP EFTSQPTSLV RELHVYGSAV 480 PVHSRDPKKF QHQGFGTLLL EEAERIAKYE HGSKKISVIS GVGVRKYYQK LGYTLDGPYM 540 SKWL 544Protein Fasta Sequence
>SPAC29A4.20.1:pep|ELP3;SPAC29A4.20|Schizosaccharomyces pombe MSTSSLAFLKAKACAEIVAELIASENQNKVINLNALKMRISKKHQLSESPRLTDIIAAIPPDAYLKESLMRKLRAKPVRTASGIAVVAVMCKPHRCPHIAMTGNVCVYCPGGPDSDFEYSTQSYTGYEPTSMRAIRARYDPYEQARGRVEQLRSLGHTVDKVEYIIMGGTFMSLPESYRHTFIANLHNALSGATTEDLDEAVKFSEQSETKCVGITIETRPDYCLDQHLDEMLRYGCTRLEIGVQSVYEDVARDTNRGHTVKAVCETFQLAKDTGYKVVTHMMPDLPNVGMERDIFQFQEYFENPAFRTDGLKLYPTLVIRGTGLYELWKTGRYKNYTPNALVDLIARILALVPPWTRIYRIQRDIPMPLVSSGVETGNLRELALNRMRDLGTKCRDIRAREVGMQEVHHKIHPEQVELLRRDYTANGGWETFLSYEDPKQDILIGLLRLRQCSDKTYRPEFTSQPTSLVRELHVYGSAVPVHSRDPKKFQHQGFGTLLLEEAERIAKYEHGSKKISVISGVGVRKYYQKLGYTLDGPYMSKWL
|
Nucleotide Sequence (Fasta) | CAATTGGAGC AATTTGCTAG CCAACTTTTA GTTGCCTTTT GCCGCCATTT GGAAGGCATA 60 AAACAACTGT TTAATTAACA GACTAATAGA AATCACACCT GATTCTATTG TTCAGGAACA 120 TGTCGACTTC CAGTTTGGCC TTTTTAAAGG CCAAAGCTTG TGCAGAAATT GTTGCTGAGC 180 TGATTGCCTC TGAAAATCAA AACAAGGTCA TCAATTTGAA TGCTTTGAAA ATGAGAATAT 240 CAAAAAAACA TCAATTATCG GAGTCCCCCC GCCTGACCGA CATTATTGCT GCAATTCCAC 300 CAGATGCCTA CCTTAAAGAA TCGTTGATGA GGAAACTAAG AGCGAAACCA GTACGTACCG 360 CCTCTGGTAT AGCAGTTGTT GCAGTGATGT GCAAACCTCA TAGATGTCCA CACATTGCCA 420 TGACAGGAAA CGTTTGTGTT TACTGTCCGG GTGGACCTGA TTCAGATTTT GAATACTCGA 480 CACAGTCGTA CACTGGTTAT GAACCAACTA GTATGCGTGC GATTCGCGCT CGTTATGATC 540 CTTATGAACA GGCTAGAGGA CGTGTTGAGC AACTGCGGTC GTTAGGCCAC ACAGTCGATA 600 AAGTAGAATA CATTATCATG GGCGGTACCT TCATGTCATT ACCTGAATCC TACCGTCACA 660 CATTTATTGC TAATTTACAC AATGCTCTTT CAGGAGCTAC GACTGAAGAT TTAGATGAAG 720 CAGTCAAATT TTCTGAGCAA TCTGAGACAA AATGTGTTGG CATTACTATT GAGACGCGTC 780 CTGATTATTG CCTAGACCAA CATTTGGATG AAATGCTTCG TTACGGATGT ACTCGTTTGG 840 AAATTGGTGT CCAAAGTGTT TACGAGGATG TCGCCAGAGA CACCAATAGA GGACATACTG 900 TTAAAGCTGT GTGCGAAACA TTCCAGTTGG CTAAGGATAC TGGATACAAG GTGGTTACGC 960 ATATGATGCC TGATTTGCCT AATGTTGGTA TGGAAAGAGA TATATTCCAA TTTCAAGAGT 1020 ACTTTGAAAA CCCTGCATTC CGTACTGATG GTTTAAAGCT CTATCCTACA TTAGTTATTC 1080 GTGGTACTGG TTTATATGAA TTATGGAAAA CGGGAAGATA TAAAAACTAT ACCCCCAATG 1140 CCTTGGTGGA TCTTATTGCT AGAATTCTCG CTTTGGTACC TCCATGGACC CGTATTTACC 1200 GTATTCAAAG AGATATCCCA ATGCCGCTTG TAAGTTCAGG CGTAGAAACA GGAAATCTCA 1260 GAGAACTTGC TTTAAATAGA ATGCGAGATT TAGGCACAAA GTGTCGAGAC ATTCGTGCTC 1320 GTGAAGTAGG TATGCAAGAA GTGCATCATA AAATTCATCC TGAGCAAGTT GAATTACTTC 1380 GCCGAGACTA TACTGCTAAT GGCGGATGGG AAACGTTTTT ATCATATGAA GATCCCAAAC 1440 AAGATATCTT GATTGGTTTG TTACGACTTC GCCAATGTTC CGATAAGACA TATCGACCAG 1500 AATTTACTTC TCAGCCTACC TCACTTGTTC GCGAACTTCA CGTGTATGGC AGTGCCGTTC 1560 CTGTTCACAG TAGAGATCCG AAGAAGTTCC AACATCAAGG TTTTGGAACA TTACTTTTAG 1620 AAGAAGCCGA GCGGATAGCT AAGTATGAGC ATGGTAGTAA AAAGATCAGT GTAATTTCGG 1680 GTGTTGGCGT TCGAAAATAT TATCAAAAAT TGGGATACAC ATTGGATGGT CCTTACATGT 1740 CTAAATGGCT TTAGCCTCTA ATATAATTTT AAGACTACTT AAGTTTGTAT AAAATATCAT 1800 TTTTGGTTGG GTGTGTTAAA ATCTTTAATA TTAACTCAGT TCGCAAGTTT TTTGAGTTGT 1860 CGATTTGGGA TGTGTGCAAT TTCATATACT ATTTAATTTC GTGTATAAAA AGAGAAAAGT 1920 GTTTAATTAC TTTCCTCTTT ATTAGATGAA ATCTGAGGTG TAGTTAGACA TATATATGTA 1980 CCATTCTTTA CTAATATTCA TATTTTTTTG CGTTCTCTTT AGACAA
2027Nucleotide Fasta Sequence
>SPAC29A4.20.1:pep|ELP3|Schizosaccharomyces pombe CAATTGGAGCAATTTGCTAGCCAACTTTTAGTTGCCTTTTGCCGCCATTTGGAAGGCATAAAACAACTGTTTAATTAACAGACTAATAGAAATCACACCTGATTCTATTGTTCAGGAACATGTCGACTTCCAGTTTGGCCTTTTTAAAGGCCAAAGCTTGTGCAGAAATTGTTGCTGAGCTGATTGCCTCTGAAAATCAAAACAAGGTCATCAATTTGAATGCTTTGAAAATGAGAATATCAAAAAAACATCAATTATCGGAGTCCCCCCGCCTGACCGACATTATTGCTGCAATTCCACCAGATGCCTACCTTAAAGAATCGTTGATGAGGAAACTAAGAGCGAAACCAGTACGTACCGCCTCTGGTATAGCAGTTGTTGCAGTGATGTGCAAACCTCATAGATGTCCACACATTGCCATGACAGGAAACGTTTGTGTTTACTGTCCGGGTGGACCTGATTCAGATTTTGAATACTCGACACAGTCGTACACTGGTTATGAACCAACTAGTATGCGTGCGATTCGCGCTCGTTATGATCCTTATGAACAGGCTAGAGGACGTGTTGAGCAACTGCGGTCGTTAGGCCACACAGTCGATAAAGTAGAATACATTATCATGGGCGGTACCTTCATGTCATTACCTGAATCCTACCGTCACACATTTATTGCTAATTTACACAATGCTCTTTCAGGAGCTACGACTGAAGATTTAGATGAAGCAGTCAAATTTTCTGAGCAATCTGAGACAAAATGTGTTGGCATTACTATTGAGACGCGTCCTGATTATTGCCTAGACCAACATTTGGATGAAATGCTTCGTTACGGATGTACTCGTTTGGAAATTGGTGTCCAAAGTGTTTACGAGGATGTCGCCAGAGACACCAATAGAGGACATACTGTTAAAGCTGTGTGCGAAACATTCCAGTTGGCTAAGGATACTGGATACAAGGTGGTTACGCATATGATGCCTGATTTGCCTAATGTTGGTATGGAAAGAGATATATTCCAATTTCAAGAGTACTTTGAAAACCCTGCATTCCGTACTGATGGTTTAAAGCTCTATCCTACATTAGTTATTCGTGGTACTGGTTTATATGAATTATGGAAAACGGGAAGATATAAAAACTATACCCCCAATGCCTTGGTGGATCTTATTGCTAGAATTCTCGCTTTGGTACCTCCATGGACCCGTATTTACCGTATTCAAAGAGATATCCCAATGCCGCTTGTAAGTTCAGGCGTAGAAACAGGAAATCTCAGAGAACTTGCTTTAAATAGAATGCGAGATTTAGGCACAAAGTGTCGAGACATTCGTGCTCGTGAAGTAGGTATGCAAGAAGTGCATCATAAAATTCATCCTGAGCAAGTTGAATTACTTCGCCGAGACTATACTGCTAATGGCGGATGGGAAACGTTTTTATCATATGAAGATCCCAAACAAGATATCTTGATTGGTTTGTTACGACTTCGCCAATGTTCCGATAAGACATATCGACCAGAATTTACTTCTCAGCCTACCTCACTTGTTCGCGAACTTCACGTGTATGGCAGTGCCGTTCCTGTTCACAGTAGAGATCCGAAGAAGTTCCAACATCAAGGTTTTGGAACATTACTTTTAGAAGAAGCCGAGCGGATAGCTAAGTATGAGCATGGTAGTAAAAAGATCAGTGTAATTTCGGGTGTTGGCGTTCGAAAATATTATCAAAAATTGGGATACACATTGGATGGTCCTTACATGTCTAAATGGCTTTAGCCTCTAATATAATTTTAAGACTACTTAAGTTTGTATAAAATATCATTTTTGGTTGGGTGTGTTAAAATCTTTAATATTAACTCAGTTCGCAAGTTTTTTGAGTTGTCGATTTGGGATGTGTGCAATTTCATATACTATTTAATTTCGTGTATAAAAAGAGAAAAGTGTTTAATTACTTTCCTCTTTATTAGATGAAATCTGAGGTGTAGTTAGACATATATATGTACCATTCTTTACTAATATTCATATTTTTTTGCGTTCTCTTTAGACAA
|
Sequence Source |
Ensembl |
Keyword |
KW-0012--Acyltransferase KW-0156--Chromatin regulator KW-0181--Complete proteome KW-0963--Cytoplasm KW-0653--Protein transport KW-1185--Reference proteome KW-0949--S-adenosyl-L-methionine KW-0804--Transcription KW-0805--Transcription regulation KW-0808--Transferase KW-0813--Transport --
|
Interpro |
IPR016181--Acyl_CoA_acyltransferase IPR006638--Elp3/MiaB/NifB IPR000182--GNAT_dom IPR005910--Hist_AcTrfase_ELP3 IPR032432--Radical_SAM_C IPR007197--rSAM IPR023404--rSAM_horseshoe
|
PROSITE |
PS51186--GNAT
|
Pfam |
PF00583--Acetyltransf_1 PF04055--Radical_SAM PF16199--Radical_SAM_C
|
Gene Ontology |
GO:0005737--C:cytoplasm GO:0005829--C:cytosol GO:0033588--C:Elongator holoenzyme complex GO:0004402--F:histone acetyltransferase activity GO:0051536--F:iron-sulfur cluster binding GO:0015031--P:protein transport GO:0006355--P:regulation of transcription, DNA-templated GO:0006351--P:transcription, DNA-templated GO:0002098--P:tRNA wobble uridine modification
|
Orthology |
|
Created Date |
25-Jun-2016 |