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Basal transcription machinery: role in regulation of stress response in eukaryotes

机译:基础转录机制:在真核生物的压力反应调节中的作用。

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摘要

The holoenzyme of prokaryotic RNA polymerase consists of the core enzyme, made of two α,β,β' and ω subunits, which lacks promoter selectivity and a sigma (σ) subunit which enables the core enzyme to initiate transcription in a promoter dependent fashion. A stress sigma factor σ~s, in prokaryotes seems to regulate several stress response genes in conjunction with other stress specific regulators. Since the basic principles of transcription are conserved from simple bacteria to multicellular complex organisms, an obvious question is: what is the identity of a counterpart of σ~s, that is closest to the core polymerase and that dictates transcription of stress regulated genes in general? In this review, we discuss the logic behind the suggestion that like in prokaryotes, eukaryotes also have a common functional unit in the transcription machinery through which the stress specific transcription factors regulate rapid and highly controlled induction of gene expression associated with generalized stress response and point to some candidates that would fit the bill of the eukaryotic σ~s.
机译:原核RNA聚合酶的全酶由核心酶(由两个α,β,β'和ω亚基组成)组成,该亚基缺乏启动子选择性,而一个σ(σ)亚基却使核心酶以依赖于启动子的方式启动转录。原核生物中的应力总和因子σ〜s似乎与其他特定于应力的调节剂一起调节多个应力响应基因。由于转录的基本原理是从简单的细菌到多细胞复杂的生物,所以一个明显的问题是:最接近核心聚合酶的σ〜s对应物的身份是什么? ?在这篇综述中,我们讨论了以下暗示背后的逻辑,即像原核生物一样,真核生物在转录机制中也具有一个共同的功能单元,通过该机制,应激特异性转录因子可以调控与广义应激反应和点相关的基因表达的快速和高度受控的诱导。一些适合真核σ〜s的候选人。

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