Tag |
Content |
WERAM ID |
WERAM-Sac-0030 |
Ensembl Protein ID |
YLR357W |
Uniprot Accession |
Q06488; RSC2_YEAST; D6VYZ5 |
Genbank Protein ID |
NP_013461.1 |
Protein Name |
Chromatin structure-remodeling complex subunit RSC2 |
Genbank Nucleotide ID |
NM_001182246.1 |
Gene Name |
RSC2;YLR357W;L9638.1 |
Ensembl Information |
|
Details |
Type |
Family |
Domain |
Substrates |
AA |
References (PMIDs) |
Ac_Reader |
Bromodomain |
Bromodomain |
|
K |
12419247 |
|
Status |
Reviewed |
Classification |
Type |
Family |
E-value |
Score |
Start |
End |
Ac_Reader |
Bromodomain |
2.30e-27 |
93.3 |
39 |
839 |
|
Organism |
Saccharomyces cerevisiae |
NCBI Taxa ID |
559292 |
Functional Description (View)Functional Description
Component of the chromatin structure remodeling complex (RSC), which is involved in transcription regulation and nucleosome positioning. RSC is responsible for the transfer of a histone octamer from a nucleosome core particle to naked DNA. The reaction requires ATP and involves an activated RSC-nucleosome intermediate. Remodeling reaction also involves DNA translocation, DNA twist and conformational change. As a reconfigurer of centromeric and flanking nucleosomes, RSC complex is required both for proper kinetochore function in chromosome segregation and, via a PKC1-dependent signaling pathway, for organization of the cellular cytoskeleton. This subunit is involved in meiotic sporulation through regulating IME2 expression, and is also essential for 2-micron plasmid maintenance and for normal REP1 protein localization. |
Component of the chromatin structure remodeling complex (RSC), which is involved in transcription regulation and nucleosome positioning. RSC is responsible for the transfer of a histone octamer from a nucleosome core particle to naked DNA. The reaction requires ATP and involves an activated RSC-nucleosome intermediate. Remodeling reaction also involves DNA translocation, DNA twist and conformational change. As a reconfigurer of centromeric and flanking nucleosomes, RSC complex is required both for proper kinetochore function in chromosome segregation and, via a PKC1-dependent signaling pathway, for organization of the cellular cytoskeleton. This subunit is involved in meiotic sporulation through regulating IME2 expression, and is also essential for 2-micron plasmid maintenance and for normal REP1 protein localization.
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Domain Profile |
Ac_Reader Bromodomain
BROMO.txt 5 vsepFrepvdpqleipdYydiikePmdLstikerleegnYsspeefvkDvrlifnNakaynenkssvq 72 +s +F+ + +++pdYy +ik+P+ ++t k+r+ Y+++++f++Dv +i +Nak+yn ++s ++ YLR357W 39 ISPIFNVLPPK-KDYPDYYAVIKNPVSFNTLKKRIPH--YTDAQQFMNDVVQIPWNAKTYNTRDSGIY 103 67777444444.49*********************99..***********************998765 PP BROMO.txt 7 epFrepvdpqleipdYydiikePmdLstikerleegnYsspeefvkDvrlifnNakayne 66 + F++ d+ +Yy +i +P+ L+ i +++++++Y++ +ef +D++l+++N++ + YLR357W 301 DLFERLPDR-HRDANYYIMIANPISLQDINKKVKTRRYKTFQEFQNDFNLMLTNFRISHR 359 678888888.6999*****************************************98765 PP BROMO.txt 40 eegnYsspeefvkDv 54 ++ +Y+++ee ++Dv YLR357W 825 RKLEYEEVEETMEDV 839 3556**********9 PP
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Protein Sequence (Fasta) | MMPDDNSNSS TQNSSALYKD LRKEYESLFT LKEDSGLEIS PIFNVLPPKK DYPDYYAVIK 60 NPVSFNTLKK RIPHYTDAQQ FMNDVVQIPW NAKTYNTRDS GIYKYALVLE KYLKDTIYPN 120 LKEKYPQLVY PDLGPLPDEP GYEEFQQKLR EKAEEVARAN AARAESSSSM NSTEAARRLR 180 KTRTSVKRES EPGTDTNNDE DYEATDMDID NPKDADFPDL IRKPLININP YTRKPLRDNR 240 STTPSHSGTP QPLGPRHRQV SRTQVKRGRP PIIDLPYIQR MKNVMKVLKK EVLDSGIGLT 300 DLFERLPDRH RDANYYIMIA NPISLQDINK KVKTRRYKTF QEFQNDFNLM LTNFRISHRG 360 DPESIKISNI LEKTFTSLAR FELSKPDRSF IPEGELRYPL DEVIVNNISY HVGDWALLRN 420 QNDPQKPIVG QIFRLWKTPD GKQWLNACWY YRPEQTVHRV DRLFYKNEVM KTGQYRDHLV 480 SNLVGKCYVI HFTRYQRGNP DMKLEGPLFV CEFRYNESDK IFNKIRTWKA CLPEEIRDLD 540 EATIPVNGRK FFKYPSPIRH LLPANATPHD RVPEPTMGSP DAPPLVGAVY MRPKMQRDDL 600 GEYATSDDCP RYIIRPNDSP EEGQVDIETG TITTNTPTAN ALPKTGYSSS KLSSLRYNRS 660 SMSLENQNAI GQQQIPLSRV GSPGAGGPLT VQGLKQHQLQ RLQQQQHQYQ QQKRSQASRY 720 NIPTIIDDLT SQASRGNLGN IMIDAASSFV LPISITKNVD VLQRTDLHSQ TKRSGREEMF 780 PWKKTKGEIL WFRGPSVIVN ERIINSGDPH LSLPLNRWFT TNKKRKLEYE EVEETMEDVT 840 GKDKDDDGLE PDVENEKESL PGPFVLGLRP SAKFTAHRLS MLRPPSSSS 889Protein Fasta Sequence
>YLR357W|RSC2;YLR357W;L9638.1|Saccharomyces cerevisiae MMPDDNSNSSTQNSSALYKDLRKEYESLFTLKEDSGLEISPIFNVLPPKKDYPDYYAVIKNPVSFNTLKKRIPHYTDAQQFMNDVVQIPWNAKTYNTRDSGIYKYALVLEKYLKDTIYPNLKEKYPQLVYPDLGPLPDEPGYEEFQQKLREKAEEVARANAARAESSSSMNSTEAARRLRKTRTSVKRESEPGTDTNNDEDYEATDMDIDNPKDADFPDLIRKPLININPYTRKPLRDNRSTTPSHSGTPQPLGPRHRQVSRTQVKRGRPPIIDLPYIQRMKNVMKVLKKEVLDSGIGLTDLFERLPDRHRDANYYIMIANPISLQDINKKVKTRRYKTFQEFQNDFNLMLTNFRISHRGDPESIKISNILEKTFTSLARFELSKPDRSFIPEGELRYPLDEVIVNNISYHVGDWALLRNQNDPQKPIVGQIFRLWKTPDGKQWLNACWYYRPEQTVHRVDRLFYKNEVMKTGQYRDHLVSNLVGKCYVIHFTRYQRGNPDMKLEGPLFVCEFRYNESDKIFNKIRTWKACLPEEIRDLDEATIPVNGRKFFKYPSPIRHLLPANATPHDRVPEPTMGSPDAPPLVGAVYMRPKMQRDDLGEYATSDDCPRYIIRPNDSPEEGQVDIETGTITTNTPTANALPKTGYSSSKLSSLRYNRSSMSLENQNAIGQQQIPLSRVGSPGAGGPLTVQGLKQHQLQRLQQQQHQYQQQKRSQASRYNIPTIIDDLTSQASRGNLGNIMIDAASSFVLPISITKNVDVLQRTDLHSQTKRSGREEMFPWKKTKGEILWFRGPSVIVNERIINSGDPHLSLPLNRWFTTNKKRKLEYEEVEETMEDVTGKDKDDDGLEPDVENEKESLPGPFVLGLRPSAKFTAHRLSMLRPPSSSS
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Nucleotide Sequence (Fasta) | ATGATGCCTG ATGACAATTC AAACTCGTCC ACTCAAAACT CAAGCGCATT ATACAAGGAC 60 CTGAGGAAAG AATATGAATC TCTTTTCACT TTAAAGGAAG ATTCTGGGTT AGAGATTTCA 120 CCAATATTCA ATGTCCTTCC ACCTAAAAAG GATTATCCTG ACTACTACGC AGTGATCAAG 180 AACCCTGTAT CTTTCAATAC TTTAAAAAAG CGTATTCCAC ATTATACAGA TGCTCAACAG 240 TTTATGAACG ATGTTGTCCA GATTCCATGG AATGCCAAGA CTTACAATAC AAGAGATTCA 300 GGAATTTATA AATACGCCTT AGTCCTTGAG AAATATTTAA AGGACACAAT CTATCCAAAT 360 TTAAAAGAAA AATATCCTCA ATTAGTGTAT CCTGATTTGG GTCCTCTACC CGATGAACCA 420 GGTTATGAAG AGTTTCAACA GAAATTAAGA GAAAAAGCTG AGGAAGTAGC GAGAGCTAAT 480 GCAGCCAGAG CCGAGTCGAG CTCTTCAATG AATTCAACAG AAGCAGCCAG AAGATTAAGA 540 AAGACTCGTA CTTCCGTCAA AAGAGAATCA GAACCAGGAA CCGATACAAA TAATGATGAG 600 GACTATGAGG CGACGGATAT GGATATCGAT AACCCTAAGG ATGCTGATTT TCCTGATTTG 660 ATAAGAAAGC CACTAATAAA TATTAATCCA TATACTCGGA AACCATTAAG AGACAACAGG 720 TCCACTACTC CATCTCACTC AGGCACCCCT CAGCCGTTAG GCCCAAGGCA TAGACAGGTA 780 TCCAGAACTC AGGTAAAGCG TGGGAGACCC CCAATCATCG ACTTACCGTA TATTCAAAGA 840 ATGAAAAATG TTATGAAAGT ACTAAAAAAA GAGGTGCTAG ATAGTGGAAT TGGTCTAACT 900 GATCTTTTTG AAAGATTGCC CGATAGACAC AGAGATGCAA ATTACTACAT CATGATTGCT 960 AATCCAATTA GTCTTCAAGA CATAAATAAA AAGGTAAAGA CTCGTCGTTA TAAAACGTTC 1020 CAGGAGTTCC AGAATGATTT TAATCTTATG TTAACCAACT TTAGAATTTC GCACAGAGGT 1080 GATCCTGAAA GCATAAAAAT TTCAAATATC TTAGAAAAGA CCTTTACTAG TCTGGCAAGA 1140 TTCGAACTAT CCAAACCTGA TAGAAGTTTC ATTCCAGAAG GCGAGCTAAG ATACCCTCTA 1200 GATGAAGTCA TTGTAAATAA TATATCATAC CACGTGGGAG ATTGGGCACT TCTTCGAAAT 1260 CAAAATGATC CTCAAAAACC TATAGTGGGC CAAATATTCA GGCTATGGAA GACACCAGAT 1320 GGGAAACAAT GGTTAAACGC TTGTTGGTAT TACAGACCCG AACAAACTGT GCATAGAGTG 1380 GATAGATTGT TTTACAAAAA CGAAGTTATG AAAACAGGTC AGTACCGTGA TCATTTAGTG 1440 TCAAACTTAG TTGGGAAATG CTATGTGATT CACTTTACTA GATATCAACG TGGTAATCCC 1500 GATATGAAAT TGGAGGGTCC CTTGTTCGTT TGCGAATTCC GTTATAATGA ATCCGATAAA 1560 ATTTTTAACA AGATTAGAAC CTGGAAGGCT TGCTTACCAG AGGAAATTCG TGATTTGGAC 1620 GAAGCTACCA TTCCGGTAAA TGGTAGAAAG TTCTTCAAAT ATCCTTCCCC CATAAGACAT 1680 CTACTACCAG CTAATGCAAC GCCGCATGAT CGCGTTCCTG AACCAACGAT GGGATCCCCG 1740 GACGCGCCAC CATTGGTCGG TGCCGTTTAT ATGAGACCTA AAATGCAGCG TGACGATTTG 1800 GGGGAATATG CAACCTCTGA TGACTGTCCC AGGTATATTA TCAGACCCAA CGATTCTCCC 1860 GAAGAGGGAC AAGTGGATAT AGAAACAGGT ACGATCACCA CAAACACGCC AACAGCAAAT 1920 GCTCTTCCTA AAACAGGATA CTCAAGTAGT AAACTATCCA GTTTAAGATA TAACAGGTCA 1980 TCTATGTCTT TAGAAAACCA AAATGCTATT GGCCAGCAAC AAATACCACT GTCAAGAGTT 2040 GGTTCCCCTG GCGCGGGAGG CCCGCTTACT GTACAAGGTT TAAAGCAACA CCAATTGCAA 2100 AGGTTACAAC AGCAGCAACA TCAATACCAA CAACAGAAAA GATCCCAAGC ATCACGTTAT 2160 AATATCCCAA CAATAATCGA TGATTTAACA TCGCAGGCAT CAAGAGGTAA TTTGGGTAAT 2220 ATAATGATCG ATGCAGCCTC CTCGTTTGTC TTACCTATCT CTATAACCAA AAACGTAGAT 2280 GTTTTGCAGC GTACTGATCT GCACAGCCAA ACCAAGAGAT CTGGAAGAGA AGAGATGTTT 2340 CCATGGAAAA AAACAAAGGG TGAAATATTA TGGTTCAGAG GACCTAGTGT GATAGTAAAT 2400 GAACGAATAA TAAATTCAGG TGACCCACAC CTAAGCCTGC CACTGAATAG GTGGTTTACC 2460 ACTAACAAGA AAAGAAAACT AGAATACGAA GAAGTTGAAG AAACCATGGA AGATGTGACT 2520 GGAAAGGACA AAGATGATGA TGGCTTAGAA CCGGATGTTG AAAATGAGAA AGAGTCCTTG 2580 CCAGGCCCAT TTGTCCTTGG ATTAAGACCC TCGGCTAAGT TCACGGCGCA CAGACTCTCT 2640 ATGCTGCGGC CTCCTTCGTC GTCTTCATGA
2671Nucleotide Fasta Sequence
>YLR357W|Bromodomain|Saccharomyces cerevisiae ATGATGCCTGATGACAATTCAAACTCGTCCACTCAAAACTCAAGCGCATTATACAAGGACCTGAGGAAAGAATATGAATCTCTTTTCACTTTAAAGGAAGATTCTGGGTTAGAGATTTCACCAATATTCAATGTCCTTCCACCTAAAAAGGATTATCCTGACTACTACGCAGTGATCAAGAACCCTGTATCTTTCAATACTTTAAAAAAGCGTATTCCACATTATACAGATGCTCAACAGTTTATGAACGATGTTGTCCAGATTCCATGGAATGCCAAGACTTACAATACAAGAGATTCAGGAATTTATAAATACGCCTTAGTCCTTGAGAAATATTTAAAGGACACAATCTATCCAAATTTAAAAGAAAAATATCCTCAATTAGTGTATCCTGATTTGGGTCCTCTACCCGATGAACCAGGTTATGAAGAGTTTCAACAGAAATTAAGAGAAAAAGCTGAGGAAGTAGCGAGAGCTAATGCAGCCAGAGCCGAGTCGAGCTCTTCAATGAATTCAACAGAAGCAGCCAGAAGATTAAGAAAGACTCGTACTTCCGTCAAAAGAGAATCAGAACCAGGAACCGATACAAATAATGATGAGGACTATGAGGCGACGGATATGGATATCGATAACCCTAAGGATGCTGATTTTCCTGATTTGATAAGAAAGCCACTAATAAATATTAATCCATATACTCGGAAACCATTAAGAGACAACAGGTCCACTACTCCATCTCACTCAGGCACCCCTCAGCCGTTAGGCCCAAGGCATAGACAGGTATCCAGAACTCAGGTAAAGCGTGGGAGACCCCCAATCATCGACTTACCGTATATTCAAAGAATGAAAAATGTTATGAAAGTACTAAAAAAAGAGGTGCTAGATAGTGGAATTGGTCTAACTGATCTTTTTGAAAGATTGCCCGATAGACACAGAGATGCAAATTACTACATCATGATTGCTAATCCAATTAGTCTTCAAGACATAAATAAAAAGGTAAAGACTCGTCGTTATAAAACGTTCCAGGAGTTCCAGAATGATTTTAATCTTATGTTAACCAACTTTAGAATTTCGCACAGAGGTGATCCTGAAAGCATAAAAATTTCAAATATCTTAGAAAAGACCTTTACTAGTCTGGCAAGATTCGAACTATCCAAACCTGATAGAAGTTTCATTCCAGAAGGCGAGCTAAGATACCCTCTAGATGAAGTCATTGTAAATAATATATCATACCACGTGGGAGATTGGGCACTTCTTCGAAATCAAAATGATCCTCAAAAACCTATAGTGGGCCAAATATTCAGGCTATGGAAGACACCAGATGGGAAACAATGGTTAAACGCTTGTTGGTATTACAGACCCGAACAAACTGTGCATAGAGTGGATAGATTGTTTTACAAAAACGAAGTTATGAAAACAGGTCAGTACCGTGATCATTTAGTGTCAAACTTAGTTGGGAAATGCTATGTGATTCACTTTACTAGATATCAACGTGGTAATCCCGATATGAAATTGGAGGGTCCCTTGTTCGTTTGCGAATTCCGTTATAATGAATCCGATAAAATTTTTAACAAGATTAGAACCTGGAAGGCTTGCTTACCAGAGGAAATTCGTGATTTGGACGAAGCTACCATTCCGGTAAATGGTAGAAAGTTCTTCAAATATCCTTCCCCCATAAGACATCTACTACCAGCTAATGCAACGCCGCATGATCGCGTTCCTGAACCAACGATGGGATCCCCGGACGCGCCACCATTGGTCGGTGCCGTTTATATGAGACCTAAAATGCAGCGTGACGATTTGGGGGAATATGCAACCTCTGATGACTGTCCCAGGTATATTATCAGACCCAACGATTCTCCCGAAGAGGGACAAGTGGATATAGAAACAGGTACGATCACCACAAACACGCCAACAGCAAATGCTCTTCCTAAAACAGGATACTCAAGTAGTAAACTATCCAGTTTAAGATATAACAGGTCATCTATGTCTTTAGAAAACCAAAATGCTATTGGCCAGCAACAAATACCACTGTCAAGAGTTGGTTCCCCTGGCGCGGGAGGCCCGCTTACTGTACAAGGTTTAAAGCAACACCAATTGCAAAGGTTACAACAGCAGCAACATCAATACCAACAACAGAAAAGATCCCAAGCATCACGTTATAATATCCCAACAATAATCGATGATTTAACATCGCAGGCATCAAGAGGTAATTTGGGTAATATAATGATCGATGCAGCCTCCTCGTTTGTCTTACCTATCTCTATAACCAAAAACGTAGATGTTTTGCAGCGTACTGATCTGCACAGCCAAACCAAGAGATCTGGAAGAGAAGAGATGTTTCCATGGAAAAAAACAAAGGGTGAAATATTATGGTTCAGAGGACCTAGTGTGATAGTAAATGAACGAATAATAAATTCAGGTGACCCACACCTAAGCCTGCCACTGAATAGGTGGTTTACCACTAACAAGAAAAGAAAACTAGAATACGAAGAAGTTGAAGAAACCATGGAAGATGTGACTGGAAAGGACAAAGATGATGATGGCTTAGAACCGGATGTTGAAAATGAGAAAGAGTCCTTGCCAGGCCCATTTGTCCTTGGATTAAGACCCTCGGCTAAGTTCACGGCGCACAGACTCTCTATGCTGCGGCCTCCTTCGTCGTCTTCATGA
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Sequence Source |
Ensembl |
Keyword |
KW-0002--3D-structure KW-0103--Bromodomain KW-0156--Chromatin regulator KW-0181--Complete proteome KW-0903--Direct protein sequencing KW-0539--Nucleus KW-0597--Phosphoprotein KW-1185--Reference proteome KW-0677--Repeat KW-0749--Sporulation KW-0804--Transcription KW-0805--Transcription regulation --
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Interpro |
IPR001025--BAH_dom IPR001487--Bromodomain IPR018359--Bromodomain_CS
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PROSITE |
PS51038--BAH PS00633--BROMODOMAIN_1 PS50014--BROMODOMAIN_2
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Pfam |
PF01426--BAH PF00439--Bromodomain
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Gene Ontology |
GO:0016586--C:RSC complex GO:0003682--F:chromatin binding GO:0043044--P:ATP-dependent chromatin remodeling GO:0007059--P:chromosome segregation GO:0000724--P:double-strand break repair via homologous recombination GO:0006303--P:double-strand break repair via nonhomologous end joining GO:0006337--P:nucleosome disassembly GO:0006276--P:plasmid maintenance GO:0042173--P:regulation of sporulation resulting in formation of a cellular spore GO:0006355--P:regulation of transcription, DNA-templated GO:0007062--P:sister chromatid cohesion GO:0030435--P:sporulation resulting in formation of a cellular spore GO:0006368--P:transcription elongation from RNA polymerase II promoter GO:0070914--P:UV-damage excision repair
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Orthology |
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Created Date |
25-Jun-2016 |