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Stress granule-defective mutants deregulate stress responsive transcripts.

PLoS Genet.. 2014-11;  10(11):e1004763
Yang X, Shen Y, Garre E, Hao X, Krumlinde D, Cvijovi? M, Arens C, Nystr?m T, Liu B, Sunnerhagen P. Department of Chemistry and Molecular Biology, Lundberg Laboratory, University of Gothenburg, Göteborg, Sweden.
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Abstract

To reduce expression of gene products not required under stress conditions, eukaryotic cells form large and complex cytoplasmic aggregates of RNA and proteins (stress granules; SGs), where transcripts are kept translationally inert. The overall composition of SGs, as well as their assembly requirements and regulation through stress-activated signaling pathways remain largely unknown. We have performed a genome-wide screen of S. cerevisiae gene deletion mutants for defects in SG formation upon glucose starvation stress. The screen revealed numerous genes not previously implicated in SG formation. Most mutants with strong phenotypes are equally SG defective when challenged with other stresses, but a considerable ... More

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