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Series GSE2488 Query DataSets for GSE2488
Status Public on Aug 21, 2006
Title Full and partial genome-wide assembly and disassembly of the yeast transcription machinery in response to heat shock
Organism Saccharomyces cerevisiae
Experiment type Genome binding/occupancy profiling by genome tiling array
Expression profiling by array
Summary Eukaryotic genes are controlled by sequence-specific DNA-binding proteins, chromatin regulators, general transcription factors, and elongation factors. Here we examine the genome-wide location of representative members of these groups and their redistribution when the Saccharomyces cerevisiae genome is reprogrammed by heat shock. As expected, assembly of active transcription complexes are coupled to eviction of H2A.Z nucleosomes, and disassembly is coupled to the return of nucleosomes. Remarkably, a large number of promoters assemble and disassemble into partial pre-initiation complexes (partial PICs), containing TFIIA, TFIID (and/or SAGA), TFIIB, TFIIE, and TFIIF. At these promoters, neither TFIIH nor RNA polymerase II are recruited, and nucleosomes are not displaced. These promoters may be preparing for additional stress that naturally accompany heat stress. For example, we find that oxidative stress, which often occurs with prolonged exposure of cells to high temperature, coverts partial PICs into full PICs. Partial PICs therefore represent novel regulated intermediates that assemble in the midst of chromatin.
Keywords: other
 
 
Contributor(s) Zanton SJ, Pugh B
Citation(s) 16912275
Submission date Apr 04, 2005
Last update date Mar 16, 2012
Contact name Frank Pugh
E-mail(s) bfp2@psu.edu
Organization name The Pennsylvania State University
Department Biochemistry and Molecular Biology
Lab Pugh Laboratory
Street address 452 North Frear Laboratory
City University Park
State/province PA
ZIP/Postal code 16802
Country USA
 
Platforms (3)
GPL760 PSU_IntergenicYeast_V1
GPL1220 PSU_Yeast6000_V2
GPL1924 PSU_IntergenicYeast_V3,4
Samples (111)
GSM13042 040-680680
GSM13043 041-680680
GSM13044 021-680680
Relations
BioProject PRJNA91887

Download family Format
SOFT formatted family file(s) SOFTHelp
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Supplementary data files not provided

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