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The role of chromatin structure in regulating stress-induced transcription in Saccharomyces cerevisiae

机译:染色质结构在酿酒酵母中调控应激诱导的转录中的作用

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摘要

All cells, whether free-living or part of a multicellular organism, must contend with a variety of environmental fluctuations that can be harmful or lethal to the cell. Cells exposed to different kinds of environmental stress rapidly alter gene transcription, resulting in the immediate downregulation of housekeeping genes, while crucial stress-responsive transcription is drastically increased. Common cis-acting elements within many stress-induced promoters, such as stress response elements and heat shock elements, allow for coordinated expression in response to many different stresses. However, specific promoter architectures, i.e., specific combinations of high- and low-affinity stress-responsive cis elements embedded in a particular chromatin environment, allow for unique expression patterns that are responsive to the individual type and degree of stress. The coordination of transcriptional stress responses and the role that chromatin structure plays in the regulation and kinetics of such responses is discussed. The interplay among global and gene-specific stress responses is illustrated using the constitutive and stress-induced transcriptional regulation of HSP82 as a model. This review also investigates evidence suggesting that stress-induced transcription is globally synchronized with the stress-induced repression of housekeeping gene via 2 distinct mechanisms of facilitating the binding of TATA-binding protein (TBP): TFIID and SAGA-mediated TBP binding.
机译:所有细胞,无论是自由生存的细胞还是多细胞生物的一部分,都必须应对可能对细胞有害或致命的各种环境波动。暴露于不同环境压力下的细胞会迅速改变基因转录,导致管家基因立即下调,而关键的应激反应转录则急剧增加。许多应激诱导型启动子中常见的顺式作用元件,例如应激反应元件和热激元件,允许响应于许多不同的应力而协调表达。但是,特定的启动子结构,即嵌入在特定染色质环境中的高亲和力和低亲和力应激反应顺式元件的特定组合,允许响应个体类型和应激程度的独特表达模式。转录应激反应的协调和染色质结构在此类反应的调节和动力学中的作用进行了讨论。以HSP82的组成型和应激诱导的转录调控为模型,说明了整体应激和基因特异性应激反应之间的相互作用。这项审查还调查证据表明应激诱导的转录与应激诱导的管家基因的抑制通过促进TATA结合蛋白(TBP)结合的两种不同机制在全球同步:TFIID和SAGA介导的TBP结合。

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