The Cyc8-Tup1 complex inhibits transcription primarily by masking the activation domain of the recruiting protein

被引:104
作者
Wong, Koon Ho [1 ]
Struhl, Kevin [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Biol Chem & Mol Pharmacol, Boston, MA 02115 USA
基金
美国国家卫生研究院;
关键词
Cyc8-Tup1; transcriptional corepressor; gene regulation; stress responses transcriptional activation; transcriptional repression; GLOBAL REPRESSOR TUP1; TATA-BINDING PROTEIN; CELL-SPECIFIC GENE; PROMOTERS IN-VIVO; POL II HOLOENZYME; SACCHAROMYCES-CEREVISIAE; CHROMATIN STRUCTURE; HISTONE DEACETYLASES; FUNCTIONAL DISSECTION; COREPRESSOR COMPLEX;
D O I
10.1101/gad.179275.111
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The yeast Tup1-Cyc8 corepressor complex is recruited to promoters by DNA-binding repressors, but the mechanisms by which it inhibits expression of genes involved in various stress pathways are poorly understood. Conditional and rapid depletion of Tup1 from the nucleus leads to concurrent nucleosome depletion and histone acetylation, recruitment of coactivators (Swi/Snf, SAGA, and Mediator), and increased transcriptional activity. Conversely, coactivator dissociation occurs rapidly upon rerepression by Cyc8-Tup1, although coactivator association and transcription can be blocked even in the absence of nucleosomes. The coactivators are recruited to the sites where Tup1 was located prior to depletion, indicating that the repressor proteins that recruit Tup1 function as activators in its absence. Last, Cyc8-Tup1 can interact with activation domains in vivo. Thus, Cyc8-Tup1 regulates transcription primarily by masking and inhibiting the transcriptional activation domains of the recruiting proteins, not by acting as a corepressor. We suggest that the corepressor function of Cyc8-Tup1 makes only a modest contribution to expression of target genes, specifically to keep expression levels below the nonactivated state.
引用
收藏
页码:2525 / 2539
页数:15
相关论文
共 76 条
[1]   Activator Control of Nucleosome Occupancy in Activation and Repression of Transcription [J].
Bryant, Gene O. ;
Prabhu, Vidya ;
Floer, Monique ;
Wang, Xin ;
Spagna, Dan ;
Schreiber, David ;
Ptashne, Mark .
PLOS BIOLOGY, 2008, 6 (12) :2928-2939
[2]   Tethering RITS to a nascent transcript initiates RNAi- and heterochromatin-dependent gene silencing [J].
Buhler, Marc ;
Verdel, André ;
Moazed, Danesh .
CELL, 2006, 125 (05) :873-886
[3]   THE GLOBAL TRANSCRIPTIONAL REGULATORS, SSN6 AND TUP1, PLAY DISTINCT ROLES IN THE ESTABLISHMENT OF A REPRESSIVE CHROMATIN STRUCTURE [J].
COOPER, JP ;
ROTH, SY ;
SIMPSON, RT .
GENES & DEVELOPMENT, 1994, 8 (12) :1400-1410
[4]   Tup1-Ssn6 interacts with multiple class I histone deacetylases in vivo [J].
Davie, JK ;
Edmondson, DG ;
Coco, CB ;
Dent, SYR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (50) :50158-50162
[5]   Corepressor-Directed Preacetylation of Histone H3 in Promoter Chromatin Primes Rapid Transcriptional Switching of Cell-Type-Specific Genes in Yeast [J].
DeSimone, Alec M. ;
Laney, Jeffrey D. .
MOLECULAR AND CELLULAR BIOLOGY, 2010, 30 (13) :3342-3356
[6]   Heat-inducible degron and the making of conditional mutants [J].
Dohmen, RJ ;
Varshavsky, A .
UBIQUITIN AND PROTEIN DEGRADATION, PT B, 2005, 399 :799-822
[7]   The organized chromatin domain of the repressed yeast a cell-specific gene STE6 contains two molecules of the corepressor Tup1p per nucleosome [J].
Ducker, CE ;
Simpson, RT .
EMBO JOURNAL, 2000, 19 (03) :400-409
[8]   Repression domain of the yeast global repressor Tup1 interacts directly with histones H3 and H4 [J].
Edmondson, DG ;
Smith, MM ;
Roth, SY .
GENES & DEVELOPMENT, 1996, 10 (10) :1247-1259
[9]  
FAN X, 2011, CURR PROTOC MOL BIOL, V93, DOI DOI 10.1002/0471142727.MB1310BS93
[10]   Extensive chromatin fragmentation improves enrichment of protein binding sites in chromatin immunoprecipitation experiments [J].
Fan, Xiaochun ;
Lamarre-Vincent, Nathan ;
Wang, Qian ;
Struhl, Kevin .
NUCLEIC ACIDS RESEARCH, 2008, 36 (19)