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Full and partial genome-wide assembly and disassembly of the yeast transcription machinery in response to heat shock

机译:响应热激反应酵母转录机制的全部和部分全基因组组装和拆卸

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摘要

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 is coupled to eviction of H2A.Z nucleosomes, and disassembly is coupled to the return of nucleosomes. Remarkably, a large number of promoters assemble into partial preinitiation complexes (partial PICs), containing TFIIA, TFIID (and/or SAGA), TFIIB, TFIIE, and TFIIF. However, RNA polymerase II and TFIIH are generally not 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, converts partial PICs into full PICs. Partial PICs therefore represent novel regulated intermediates that assemble at promoters in the midst of chromatin.
机译:真核基因受序列特异性DNA结合蛋白,染色质调节剂,一般转录因子和延伸因子控制。在这里,我们通过热激对酿酒酵母基因组重新编程时,检查了这些群体中代表性成员的全基因组位置及其重新分布。如预期的那样,活性转录复合物的组装与H2A.Z核小体的逐出相关,而拆卸与核小体的返回相关。值得注意的是,大量启动子组装成部分预启动复合体(部分PIC),其中包含TFIIA,TFIID(和/或SAGA),TFIIB,TFIIE和TFIIF。但是,通常不募集RNA聚合酶II和TFIIH,并且不置换核小体。这些促进剂可能正在准备自然伴随热应激的其他应激。例如,我们发现,氧化应激通常会随着细胞长时间暴露在高温下而发生,从而将部分PIC转换为完全PIC。因此,部分PIC代表了在染色质中间的启动子处组装的新型调控中间体。

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