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The RSC complex localizes to coding sequences to regulate Pol II and histone occupancy.
Spain, Marla M; Ansari, Suraiya A; Pathak, Rakesh; Palumbo, Michael J; Morse, Randall H; Govind, Chhabi K.
  • Spain MM; Department of Biological Sciences, Oakland University, Rochester, MI 48309, USA.
  • Ansari SA; Laboratory of Molecular Genetics, Wadsworth Center, NY State Department of Health, Albany, NY 12208, USA.
  • Pathak R; Department of Biological Sciences, Oakland University, Rochester, MI 48309, USA.
  • Palumbo MJ; Laboratory of Molecular Genetics, Wadsworth Center, NY State Department of Health, Albany, NY 12208, USA.
  • Morse RH; Laboratory of Molecular Genetics, Wadsworth Center, NY State Department of Health, Albany, NY 12208, USA.
  • Govind CK; Department of Biological Sciences, Oakland University, Rochester, MI 48309, USA. Electronic address: govind@oakland.edu.
Mol Cell ; 56(5): 653-66, 2014 Dec 04.
Article en En | MEDLINE | ID: mdl-25457164
ABSTRACT
ATP-dependent chromatin remodelers regulate chromatin structure during multiple stages of transcription. We report that RSC, an essential chromatin remodeler, is recruited to the open reading frames (ORFs) of actively transcribed genes genome wide, suggesting a role for RSC in regulating transcription elongation. Consistent with such a role, Pol II occupancy in the ORFs of weakly transcribed genes is drastically reduced upon depletion of the RSC catalytic subunit Sth1. RSC inactivation also reduced histone H3 occupancy across transcribed regions. Remarkably, the strongest effects on Pol II and H3 occupancy were confined to the genes displaying the greatest RSC ORF enrichment. Additionally, RSC recruitment to the ORF requires the activities of the SAGA and NuA4 HAT complexes and is aided by the activities of the Pol II CTD Ser2 kinases Bur1 and Ctk1. Overall, our findings strongly implicate ORF-associated RSC in governing Pol II function and in maintaining chromatin structure over transcribed regions.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Saccharomyces cerevisiae / Factores de Transcripción / ARN Polimerasa II / Histonas / Proteínas de Saccharomyces cerevisiae / Proteínas de Unión al ADN Tipo de estudio: Prognostic_studies Idioma: En Año: 2014 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Saccharomyces cerevisiae / Factores de Transcripción / ARN Polimerasa II / Histonas / Proteínas de Saccharomyces cerevisiae / Proteínas de Unión al ADN Tipo de estudio: Prognostic_studies Idioma: En Año: 2014 Tipo del documento: Article