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细菌σ因子:历史、结构和基因组视角。

Bacterial sigma factors: a historical, structural, and genomic perspective.

机构信息

The Rockefeller University, New York, NY 10065; email:

出版信息

Annu Rev Microbiol. 2014;68:357-76. doi: 10.1146/annurev-micro-092412-155737. Epub 2014 Jun 18.

Abstract

Transcription initiation is the crucial focal point of gene expression in prokaryotes. The key players in this process, sigma factors (σs), associate with the catalytic core RNA polymerase to guide it through the essential steps of initiation: promoter recognition and opening, and synthesis of the first few nucleotides of the transcript. Here we recount the key advances in σ biology, from their discovery 45 years ago to the most recent progress in understanding their structure and function at the atomic level. Recent data provide important structural insights into the mechanisms whereby σs initiate promoter opening. We discuss both the housekeeping σs, which govern transcription of the majority of cellular genes, and the alternative σs, which direct RNA polymerase to specialized operons in response to environmental and physiological cues. The review concludes with a genome-scale view of the extracytoplasmic function σs, the most abundant group of alternative σs.

摘要

转录起始是原核生物基因表达的关键焦点。在这个过程中,σ 因子(σs)与催化核心 RNA 聚合酶结合,指导其完成起始的关键步骤:启动子识别和打开,以及转录本前几个核苷酸的合成。在这里,我们回顾了 45 年前发现以来 σ 生物学的主要进展,以及最近在原子水平上理解它们的结构和功能的最新进展。最近的数据为 σs 启动启动子打开的机制提供了重要的结构见解。我们讨论了管家 σs,它们控制着大多数细胞基因的转录,以及替代 σs,它们根据环境和生理信号引导 RNA 聚合酶到专门的操纵子。综述以细胞外功能 σs 的基因组规模视角结束,这是最丰富的替代 σs 群体。

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