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Toward a Genomic View of the Gene Expression Program Regulated by Osmostress in Yeast

机译:基因组的基因表达项目由Osmostress酵母

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摘要

Osmostress triggers profound adaptive changes in the physiology of the cell with a great impact on gene expression. Saccharomyces cerevisiae has served as an instructive model system to unravel the complexity of the stress response at the transcriptional level. The main signal transduction pathways like the HOG (high osmolarity glycerol) MAP kinase cascade or the protein kinase A pathway regulate multiple specific transcription factors to accomplish large changes in the expression pattern of the genome. Transcription profiling and proteomic studies give us an idea about the impact of osmostress on gene expression and the overall protein composition. Recent genome wide location studies for several transcription factors and signaling kinases involved in the transcriptional stress response shed light on the genomic organization of the osmostress response at the level of the dynamic association of regulators with chromatin. Finally, global surveys of mRNA stability complete our picture of the mechanisms underlying the massive reprogramming of global gene expression, which leads to efficient adaptation to osmotic stress.
机译:Osmostress引发深刻的自适应变化细胞的生理机能有很大的影响基因的表达。作为一个有益的模型体系崩溃的压力反应的复杂性转录水平。转导途径像猪(高渗透性MAP激酶级联或甘油)蛋白激酶途径调节多个特定转录因子来完成表达模式的巨大变化基因组。学习给我们带来的影响osmostress基因表达和整体蛋白质成分。一些转录因子和研究信号激酶参与转录压力反应揭示基因组组织osmostress响应的水平的动态监管机构协会染色质。稳定的完成我们的机制潜在的全球的大规模重组基因表达,从而导致效率适应渗透压力。

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