Systematic analysis of tup1 and cyc8 mutants reveals distinct roles for TUP1 and CYC8 and offers new insight into the regulation of gene transcription by the yeast Tup1-Cyc8 complex

被引:5
作者
Lee, Brenda [1 ]
Church, Michael [1 ,2 ]
Hokamp, Karsten [3 ]
Alhussain, Mohamed M. [1 ]
Bamagoos, Atif A. [4 ]
Fleming, Alastair B. [1 ]
机构
[1] Trinity Coll Dublin, Moyne Inst Prevent Med, Sch Genet & Microbiol, Dept Microbiol, Dublin, Ireland
[2] Stowers Inst Med Res, Kansas City, MO USA
[3] Trinity Coll Dublin, Smurfit Inst, Sch Genet & Microbiol, Dept Genet, Dublin, Ireland
[4] King Abdulaziz Univ, Fac Sci, Dept Biol Sci, Jeddah, Saudi Arabia
关键词
HISTONE H3 ACETYLATION; SACCHAROMYCES-CEREVISIAE; CYC8-TUP1; COREPRESSOR; GLUCOSE REPRESSION; TERMINAL DOMAIN; CO-REPRESSOR; SWI-SNF; FLOCCULATION; PROMOTER; PROTEIN;
D O I
10.1371/journal.pgen.1010876
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The Tup1-Cyc8 complex in Saccharomyces cerevisiae was one of the first global co-repressors of gene transcription discovered. However, despite years of study, a full understanding of the contribution of Tup1p and Cyc8p to complex function is lacking. We examined TUP1 and CYC8 single and double deletion mutants and show that CYC8 represses more genes than TUP1, and that there are genes subject to (i) unique repression by TUP1 or CYC8, (ii) redundant repression by TUP1 and CYC8, and (iii) there are genes at which de-repression in a cyc8 mutant is dependent upon TUP1, and vice-versa. We also reveal that Tup1p and Cyc8p can make distinct contributions to commonly repressed genes most likely via specific interactions with different histone deacetylases. Furthermore, we show that Tup1p and Cyc8p can be found independently of each other to negatively regulate gene transcription and can persist at active genes to negatively regulate on-going transcription. Together, these data suggest that Tup1p and Cyc8p can associate with active and inactive genes to mediate distinct negative and positive regulatory roles when functioning within, and possibly out with the complex. Author summaryThe Tup1-Cyc8 complex in the yeast, Saccharomyces cerevisiae, was one of the first global co-repressors of gene transcription discovered. However, despite years of study, a full understanding of this complex is lacking. We examined TUP1 and CYC8 single and double gene deletion mutants and show that the Tup1 and Cyc8 proteins can make distinct contributions to the regulation of Tup1-Cyc8 target genes. Furthermore, we show that Tup1p and Cyc8p can be found independently of each other to negatively regulate gene transcription and can persist at active genes to negatively regulate on-going transcription. Together, these data suggest that Tup1p and Cyc8p can associate with active and inactive genes to mediate distinct negative and positive regulatory roles when functioning within, and possibly out with the complex. This suggests the Tup1-Cyc8 complex should be considered more as a 'regulator of transcription' and not solely as a dedicated 'repressor of transcription'.
引用
收藏
页数:32
相关论文
共 73 条
[1]   The Groucho/Transducin-Like Enhancer of Split Protein Family in Animal Development [J].
Agarwal, Megha ;
Kumar, Pankaj ;
Mathew, Sam J. .
IUBMB LIFE, 2015, 67 (07) :472-481
[2]   Recruitment of the yeast Tup1p-Ssn6p repressor is associated with localized decreases in histone acetylation [J].
Bone, JR ;
Roth, SY .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (03) :1808-1813
[3]   Localization and cell surface anchoring of the Saccharomyces cerevisiae flocculation protein Flo1p [J].
Bony, M ;
ThinesSempoux, D ;
Barre, P ;
Blondin, B .
JOURNAL OF BACTERIOLOGY, 1997, 179 (15) :4929-4936
[4]   A short-range gradient of histone H3 acetylation and Tup1p redistribution at the promoter of the Saccharomyces cerevisiae SUC2 gene [J].
Boukaba, A ;
Georgieva, EI ;
Myers, FA ;
Thorne, AW ;
López-Rodas, G ;
Crane-Robinson, C ;
Franco, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (09) :7678-7684
[5]   2 DIFFERENTIALLY REGULATED MESSENGER-RNAS WITH DIFFERENT 5' ENDS ENCODE SECRETED AND INTRACELLULAR FORMS OF YEAST INVERTASE [J].
CARLSON, M ;
BOTSTEIN, D .
CELL, 1982, 28 (01) :145-154
[6]   Groucho/TLE family proteins and transcriptional repression [J].
Chen, GQ ;
Courey, AJ .
GENE, 2000, 249 (1-2) :1-16
[7]   Stabilization of the promoter nucleosomes in nucleosome-free regions by the yeast Cyc8-Tup1 corepressor [J].
Chen, Kaifu ;
Wilson, Marenda A. ;
Hirsch, Calley ;
Watson, Anjanette ;
Liang, Shoudan ;
Lu, Yue ;
Li, Wei ;
Dent, Sharon Y. R. .
GENOME RESEARCH, 2013, 23 (02) :312-322
[8]   Sas3 and Ada2(Gcn5)-dependent histone H3 acetylation is required for transcription elongation at the de-repressed FLO1 gene [J].
Church, Michael ;
Smith, Kim C. ;
Alhussain, Mohamed M. ;
Pennings, Sari ;
Fleming, Alastair B. .
NUCLEIC ACIDS RESEARCH, 2017, 45 (08) :4413-4430
[9]  
Collart M A, 2001, Curr Protoc Mol Biol, VChapter 13, DOI 10.1002/0471142727.mb1312s23
[10]   The Tup1-Cyc8 protein complex can shift from a transcriptional co-repressor to a transcriptional co-activator [J].
Conlan, RS ;
Gounalaki, N ;
Hatzis, P ;
Tzamarias, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (01) :205-210