Varón D, Brody M S, Price C W
Department of Food Science and Technology, University of California, Davis 95616, USA.
Mol Microbiol. 1996 Apr;20(2):339-50. doi: 10.1111/j.1365-2958.1996.tb02621.x.
The sigma B transcription factor of Bacillus subtilis is activated in response to a variety of environmental stresses, including those imposed by entry into the stationary-growth phase, and by heat, salt or ethanol challenge to logarithmically growing cells. Although sigma B is thought to control a general stress regulon, the range of cellular functions it directs remains largely unknown. Our approach to understand the physiological role of sigma B is to characterize genes that require this factor for all or part of their expression, i.e. the csb genes. In this study, we report that the transposon insertion csb40::Tn917lac identifies an operon with three open reading frames, the second of which resembles plant proteins induced by desiccation stress. Primer-extension and operon-fusion experiments showed that the csb40 operon has a sigma B-dependent promoter which is strongly induced by the addition of salt to logarithmically growing cells. The csb40 operon also has a second, sigma H-dependent promoter that is unaffected by salt addition. These results provide support for the hypothesis that sigma B controls a general stress regulon, and indicate that the sigma B and sigma H regulons partly overlap. We suggest that in addition to its acknowledged role in the sporulation process, sigma H is also involved in controlling a subclass of genes that are broadly involved in a general stress response.
枯草芽孢杆菌的σB转录因子会在多种环境压力下被激活,这些压力包括进入稳定生长期所带来的压力,以及对数生长期细胞受到热、盐或乙醇刺激时产生的压力。尽管人们认为σB控制着一个通用的应激调节子,但其所指导的细胞功能范围在很大程度上仍不清楚。我们了解σB生理作用的方法是鉴定那些全部或部分表达需要该因子的基因,即csb基因。在本研究中,我们报告转座子插入csb40::Tn917lac鉴定出一个含有三个开放阅读框的操纵子,其中第二个开放阅读框类似于由干燥胁迫诱导的植物蛋白。引物延伸和操纵子融合实验表明,csb40操纵子有一个依赖σB的启动子,在对数生长期细胞中添加盐时会被强烈诱导。csb40操纵子还有第二个依赖σH的启动子,其不受盐添加的影响。这些结果为σB控制通用应激调节子这一假说提供了支持,并表明σB和σH调节子部分重叠。我们认为,除了其在芽孢形成过程中公认的作用外,σH还参与控制一类广泛参与通用应激反应的基因。