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Series GSE18 Query DataSets for GSE18
Status Public on Feb 12, 2002
Title Yeast Stress Response
Organism Saccharomyces cerevisiae
Experiment type Expression profiling by array
Summary We explored genomic expression patterns in the yeast Saccharomyces cerevisiae responding to diverse environmental transitions. DNA microarrays were used to measure changes in transcript levels over time for almost every yeast gene, as cells responded to temperature shocks, hydrogen peroxide, the superoxide-generating drug menadione, the sulfhydryl-oxidizing agent diamide, the disulfide-reducing agent dithiothreitol, hyper- and hypo-osmotic shock, amino acid starvation, nitrogen source depletion, and progression into stationary phase. A large set of genes (approximately 900) showed a similar drastic response to almost all of these environmental changes. Additional features of the genomic responses were specialized for specific conditions. Promoter analysis and subsequent characterization of the responses of mutant strains implicated the transcription factors Yap1p, as well as Msn2p and Msn4p, in mediating specific features of the transcriptional response, while the identification of novel sequence elements provided clues to novel regulators. Physiological themes in the genomic responses to specific environmental stresses provided insights into the effects of those stresses on the cell.
Study is described in more detail in Gasch AP et al.(2000) Mol Biol Cell 11:4241-57
Keywords: other
 
 
Contributor(s) Gasch AP, Spellman PT, Kao CM, Carmel-Harel O, Eisen MB, Storz G, Botstein D, Brown PO
Citation(s) 11102521
Submission date Feb 08, 2002
Last update date Jan 18, 2013
Organization Stanford Microarray Database (SMD)
E-mail(s) array@genome.stanford.edu
Phone 650-498-6012
URL http://genome-www5.stanford.edu/
Department Stanford University, School of Medicine
Street address 300 Pasteur Drive
City Stanford
State/province CA
ZIP/Postal code 94305
Country USA
 
Platforms (9)
GPL51 y11
GPL52 y12
GPL53 y13
Samples (156)
GSM842 YPD 2 h (25C)
GSM843 YPD 4 h (25C)
GSM844 YPD 8 h (25C)
Relations
BioProject PRJNA84543

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Supplementary data files not provided

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