Chromatin Disassembly from the PHO5 Promoter Is Essential for the Recruitment of the General Transcription Machinery and Coactivators
- 1 September 2007
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 27 (18) , 6372-6382
- https://doi.org/10.1128/mcb.00981-07
Abstract
The disassembly of promoter nucleosomes appears to be a general property of highly transcribed eukaryotic genes. We have previously shown that the disassembly of chromatin from the promoters of the Saccharomyces cerevisiae PHO5 and PHO8 genes, mediated by the histone chaperone anti-silencing function 1 (Asf1), is essential for transcriptional activation upon phosphate depletion. This mechanism of transcriptional regulation is shared with the ADY2 and ADH2 genes upon glucose removal. Promoter chromatin disassembly by Asf1 is required for recruitment of TBP and RNA polymerase II, but not the Pho4 and Pho2 activators. Furthermore, accumulation of SWI/SNF and SAGA at the PHO5 promoter requires promoter chromatin disassembly. By contrast, the requirement for SWI/SNF and SAGA to facilitate Pho4 activator recruitment to the nucleosome-buried binding site in the PHO5 promoter occurs prior to chromatin disassembly and is distinct from the stable recruitment of SWI/SNF and SAGA that occurs after chromatin disassembly.Keywords
This publication has 69 references indexed in Scilit:
- Activation of Saccharomyces cerevisiae HIS3 Results in Gcn4p-Dependent, SWI/SNF-Dependent Mobilization of Nucleosomes over the Entire GeneMolecular and Cellular Biology, 2006
- Structural Basis for the Histone Chaperone Activity of Asf1Cell, 2006
- Active PHO5 chromatin encompasses variable numbers of nucleosomes at individual promotersNature Structural & Molecular Biology, 2006
- Histone H3 Methylation by Set2 Directs Deacetylation of Coding Regions by Rpd3S to Suppress Spurious Intragenic TranscriptionCell, 2005
- Genome-scale profiling of histone H3.3 replacement patternsNature Genetics, 2005
- Genome-wide Map of Nucleosome Acetylation and Methylation in YeastPublished by Elsevier ,2005
- The Histone Chaperone Anti-Silencing Function 1 Is a Global Regulator of Transcription Independent of Passage through S PhaseMolecular and Cellular Biology, 2005
- Evidence for nucleosome depletion at active regulatory regions genome-wideNature Genetics, 2004
- Histone H3.1 and H3.3 Complexes Mediate Nucleosome Assembly Pathways Dependent or Independent of DNA SynthesisCell, 2004
- Disruption of Reconstituted NucleosomesJournal of Biological Chemistry, 1995