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两个 RyhB 旁系同源物在沙门氏菌生理中的作用。

Roles of two RyhB paralogs in the physiology of Salmonella enterica.

机构信息

Department of Oral Biology, College of Dentistry, University of Florida, Gainesville, FL 32610, United States.

出版信息

Microbiol Res. 2016 May-Jun;186-187:146-52. doi: 10.1016/j.micres.2016.04.004. Epub 2016 Apr 13.

Abstract

Salmonella has evolved complicated regulatory systems to regulate the expression of virulence determinants that are acquired by horizontal gene transfer in response to various environmental niches. Among these, small RNA (sRNA)-mediated regulation exhibits unique features, distinct from those of protein factor-mediated regulation, which may provide benefits for a pathogen coping with the complex stress conditions encountered during host infection. Specifically, iron acquisition by this pathogenic bacterium is important for cellular processes such as energy metabolism and DNA replication. Many studies on the role of RyhB sRNA have begun to unveil the essential nature of iron acquisition in allowing the organism to persist and develop pathogenicity. The Salmonella genome encodes two RyhB paralogs, RyhB-1 and RyhB-2, which are known to act singularly or together on target expression. Based on the mechanism of Escherichia coli RyhB function, this review proposes a possible model to show how two Salmonella RyhB paralogs regulate the level of target mRNAs by sensing environmental inputs or conditions. This review also describes the involvement of Salmonella RyhBs in diverse functions including nitrate homeostasis, adaptive system to oxidative stress, and intracellular survival. Thus, the two Salmonella RyhBs play a critical role in the regulation of gene expression that appears to be essential for persistence and pathogenesis of Salmonella spp.

摘要

沙门氏菌已经进化出复杂的调控系统,以调节毒力决定因素的表达,这些决定因素是通过水平基因转移获得的,以响应各种环境小生境。在这些系统中,小 RNA(sRNA)介导的调控表现出独特的特征,与蛋白质因子介导的调控不同,这可能为病原体应对宿主感染过程中遇到的复杂应激条件提供益处。具体而言,这种致病菌的铁摄取对于细胞过程如能量代谢和 DNA 复制非常重要。许多关于 RyhB sRNA 作用的研究开始揭示铁摄取对于允许生物体持续存在和发展致病性的重要性。沙门氏菌基因组编码两个 RyhB 同源物,RyhB-1 和 RyhB-2,它们已知单独或一起作用于靶标表达。基于大肠杆菌 RyhB 功能的机制,本综述提出了一个可能的模型,展示了两个沙门氏菌 RyhB 同源物如何通过感知环境输入或条件来调节靶标 mRNA 的水平。本综述还描述了沙门氏菌 RyhBs 参与多种功能,包括硝酸盐稳态、氧化应激适应系统和细胞内存活。因此,两个沙门氏菌 RyhB 在基因表达的调控中发挥着关键作用,这似乎对于沙门氏菌属的持续存在和发病机制至关重要。

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