Suppr超能文献

枯草芽孢杆菌RNA聚合酶的替代σ因子编码sigB和spoIIA操纵子的相似组织。

Similar organization of the sigB and spoIIA operons encoding alternate sigma factors of Bacillus subtilis RNA polymerase.

作者信息

Kalman S, Duncan M L, Thomas S M, Price C W

机构信息

Department of Food Science and Technology, University of California, Davis 95616.

出版信息

J Bacteriol. 1990 Oct;172(10):5575-85. doi: 10.1128/jb.172.10.5575-5585.1990.

Abstract

Bacillus subtilis sigma-B is an alternate sigma factor implicated in controlling stationary-phase gene expression. We characterized the genetic organization and regulation of the region containing the sigma-B structural gene (sigB) to learn which metabolic signals and protein factors govern sigma-B function. sigB lay in an operon with four open reading frames (orfs) in the order orfV-orfW-sigB-orfX, and lacZ gene fusions showed that all four frames were translated in vivo. Experiments with primer extension, S1 nuclease mapping, and lacZ transcriptional fusions found that sigB operon transcription initiated early in stationary phase from a site 32 nucleotides upstream of orfV and terminated 34 nucleotides downstream of orfX. Fusion expression was abolished in a strain carrying an in-frame deletion in sigB, suggesting that sigma-B positively regulated its own synthesis, and deletions in the sigB promoter region showed that sequences identical to the sigma-B-dependent ctc promoter were essential for promoter activity. Fusion expression was greatly enhanced in a strain carrying an insertion mutation in orfX, suggesting that the 22-kilodalton (kDa) orfX product was a negative effector of sigma-B expression or activity. Notably, the genetic organization of the sigB operon was strikingly similar to that of the B. subtilis spoIIA operon, which has the gene order spoIIAA-spoIIAB-spoIIAC, with spoIIAC encoding the sporulation-essential sigma-F. The predicted sequence of the 12-kDa orfV product was 32% identical to that of the 13-kDa SpoIIAA protein, and the 18-kDa orfW product was 27% identical to the 16-kDa SpoIIAB protein. On the basis of this clear evolutionary conservation, we speculate these protein pairs regulate their respective sigma factors by a similar molecular mechanism and that the spoIIA and sigB operons might control divergent branches of stationary-phase gene expression.

摘要

枯草芽孢杆菌的σ-B是一种参与控制稳定期基因表达的替代σ因子。我们对包含σ-B结构基因(sigB)的区域进行了遗传组织和调控特征分析,以了解哪些代谢信号和蛋白质因子控制σ-B的功能。sigB位于一个操纵子中,该操纵子有四个开放阅读框(orfs),顺序为orfV-orfW-sigB-orfX,并且lacZ基因融合表明所有四个框在体内都被翻译。通过引物延伸、S1核酸酶作图和lacZ转录融合实验发现,sigB操纵子转录在稳定期早期从orfV上游32个核苷酸处的位点起始,并在orfX下游34个核苷酸处终止。在sigB中携带框内缺失的菌株中,融合表达被消除,这表明σ-B正向调节其自身的合成,并且sigB启动子区域的缺失表明与依赖σ-B的ctc启动子相同的序列对于启动子活性是必不可少的。在orfX中携带插入突变的菌株中,融合表达大大增强,这表明22千道尔顿(kDa)的orfX产物是σ-B表达或活性的负效应物。值得注意的是,sigB操纵子的遗传组织与枯草芽孢杆菌spoIIA操纵子的遗传组织惊人地相似,spoIIA操纵子的基因顺序为spoIIAA-spoIIAB-spoIIAC,其中spoIIAC编码孢子形成必需的σ-F。12 kDa的orfV产物的预测序列与13 kDa的SpoIIAA蛋白的序列有32%的同一性,18 kDa的orfW产物与16 kDa的SpoIIAB蛋白有27%的同一性。基于这种明显的进化保守性,我们推测这些蛋白质对通过类似的分子机制调节它们各自的σ因子,并且spoIIA和sigB操纵子可能控制稳定期基因表达的不同分支。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50ca/526868/51068561f5d6/jbacter00164-0073-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验