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细菌σ因子的基本活性。

The essential activities of the bacterial sigma factor.

作者信息

Davis Maria C, Kesthely Christopher A, Franklin Emily A, MacLellan Shawn R

机构信息

Department of Biology, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.

出版信息

Can J Microbiol. 2017 Feb;63(2):89-99. doi: 10.1139/cjm-2016-0576. Epub 2016 Nov 7.

Abstract

Transcription is the first and most heavily regulated step in gene expression. Sigma (σ) factors are general transcription factors that reversibly bind RNA polymerase (RNAP) and mediate transcription of all genes in bacteria. σ Factors play 3 major roles in the RNA synthesis initiation process: they (i) target RNAP holoenzyme to specific promoters, (ii) melt a region of double-stranded promoter DNA and stabilize it as a single-stranded open complex, and (iii) interact with other DNA-binding transcription factors to contribute complexity to gene expression regulation schemes. Recent structural studies have demonstrated that when σ factors bind promoter DNA, they capture 1 or more nucleotides that are flipped out of the helical DNA stack and this stabilizes the promoter open-complex intermediate that is required for the initiation of RNA synthesis. This review describes the structure and function of the σ family of σ proteins and the essential roles they play in the transcription process.

摘要

转录是基因表达过程中的第一步,也是受到最严格调控的步骤。σ因子是一类通用转录因子,它们与RNA聚合酶(RNAP)可逆性结合,并介导细菌中所有基因的转录。σ因子在RNA合成起始过程中发挥三个主要作用:(i)将RNAP全酶靶向特定启动子;(ii)使一段双链启动子DNA解链,并将其稳定为单链开放复合物;(iii)与其他DNA结合转录因子相互作用,增加基因表达调控机制的复杂性。最近的结构研究表明,当σ因子结合启动子DNA时,它们会捕获1个或更多从螺旋状DNA堆积中翻转出来的核苷酸,这稳定了RNA合成起始所需的启动子开放复合物中间体。本综述描述了σ蛋白家族的结构和功能,以及它们在转录过程中发挥的重要作用。

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