Asai Kei
Department of Bioscience, Faculty of Life Sciences, Tokyo University of Agriculture.
Genes Genet Syst. 2018 Apr 10;92(5):223-234. doi: 10.1266/ggs.17-00046. Epub 2018 Jan 17.
Proteins belonging to the sigma factor family in eubacteria initiate transcription by associating with RNA polymerase. A subfamily, the extracytoplasmic function (ECF) sigma factors, which form a widely distributed bacterial signal transduction system comprising a sigma factor and a cognate membrane-embedded anti-sigma factor, regulates genes in response to stressors that threaten cell envelope integrity including the cell wall and membrane. The Gram-positive soil bacterium Bacillus subtilis provides a valuable model for investigation of the ECF sigma factors. This review focuses on the function and regulation of ECF sigma factors in B. subtilis, in which anti-sigma factors play a role in connecting an external stimulus with gene regulation. As representative examples, the regulon and regulatory mechanism of σ are closely associated with membrane-active stressors, whereas σ is strongly induced by conditions that impair peptidoglycan synthesis. These studies demonstrate that the mechanisms of ECF-dependent signaling are divergent and constitute a multi-layered hierarchy, and provide useful insights into the elucidation of unknown mechanisms related to ECF sigma factors.
真细菌中属于σ因子家族的蛋白质通过与RNA聚合酶结合来启动转录。一个亚家族,即胞外功能(ECF)σ因子,形成了一个广泛分布的细菌信号转导系统,该系统由一个σ因子和一个同源的膜嵌入型抗σ因子组成,可响应威胁细胞壁和细胞膜等细胞包膜完整性的应激源来调控基因。革兰氏阳性土壤细菌枯草芽孢杆菌为研究ECF σ因子提供了一个有价值的模型。本综述聚焦于枯草芽孢杆菌中ECF σ因子的功能和调控,其中抗σ因子在将外部刺激与基因调控联系起来方面发挥作用。作为代表性例子,σ的调控子和调控机制与膜活性应激源密切相关,而σ在肽聚糖合成受损的条件下会被强烈诱导。这些研究表明,ECF依赖性信号传导机制是多样的,构成了一个多层次的体系,并为阐明与ECF σ因子相关的未知机制提供了有益的见解。