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鼠伤寒沙门氏菌中不依赖鞭毛的表面运动性

Flagella-independent surface motility in Salmonella enterica serovar Typhimurium.

作者信息

Park Sun-Yang, Pontes Mauricio H, Groisman Eduardo A

机构信息

Howard Hughes Medical Institute and Department of Microbial Pathogenesis, Yale School of Medicine, Boyer Center for Molecular Medicine, New Haven, CT 06536-0812; and Yale Microbial Sciences Institute, West Haven, CT 06516.

Howard Hughes Medical Institute and Department of Microbial Pathogenesis, Yale School of Medicine, Boyer Center for Molecular Medicine, New Haven, CT 06536-0812; and Yale Microbial Sciences Institute, West Haven, CT 06516

出版信息

Proc Natl Acad Sci U S A. 2015 Feb 10;112(6):1850-5. doi: 10.1073/pnas.1422938112. Epub 2015 Jan 26.

Abstract

Flagella are multiprotein complexes necessary for swimming and swarming motility. In Salmonella enterica serovar Typhimurium, flagella-mediated motility is repressed by the PhoP/PhoQ regulatory system. We now report that Salmonella can move on 0.3% agarose media in a flagella-independent manner when experiencing the PhoP/PhoQ-inducing signal low Mg(2+). This motility requires the PhoP-activated mgtA, mgtC, and pagM genes, which specify a Mg(2+) transporter, an inhibitor of Salmonella's own F1Fo ATPase, and a small protein of unknown function, respectively. The MgtA and MgtC proteins are necessary for pagM expression because pagM mRNA levels were lower in mgtA and mgtC mutants than in wild-type Salmonella, and also because pagM expression from a heterologous promoter rescued motility in mgtA and mgtC mutants. PagM promotes group motility by a surface protein(s), as a pagM-expressing strain conferred motility upon a pagM null mutant, and proteinase K treatment eliminated motility. The pagM gene is rarely found outside subspecies I of S. enterica and often present in nonfunctional allelic forms in organisms lacking the identified motility. Deletion of the pagM gene reduced bacterial replication on 0.3% agarose low Mg(2+) media but not in low Mg(2+) liquid media. Our findings define a form of motility that allows Salmonella to scavenge nutrients and to escape toxic compounds in low Mg(2+) semisolid environments.

摘要

鞭毛是细菌游动和群体运动所必需的多蛋白复合体。在鼠伤寒沙门氏菌中,鞭毛介导的运动受到PhoP/PhoQ调控系统的抑制。我们现在报道,当沙门氏菌感受到PhoP/PhoQ诱导信号低镁离子(Mg²⁺)时,它可以以不依赖鞭毛的方式在0.3%琼脂糖培养基上移动。这种运动需要PhoP激活的mgtA、mgtC和pagM基因,它们分别编码一种镁离子转运蛋白、沙门氏菌自身F1Fo ATP酶的抑制剂以及一种功能未知的小蛋白。MgtA和MgtC蛋白对于pagM的表达是必需的,这是因为pagM mRNA水平在mgtA和mgtC突变体中比在野生型沙门氏菌中更低,还因为来自异源启动子的pagM表达挽救了mgtA和mgtC突变体中的运动能力。PagM通过一种表面蛋白促进群体运动,因为表达pagM的菌株赋予了pagM缺失突变体运动能力,并且蛋白酶K处理消除了运动能力。pagM基因在肠炎沙门氏菌亚种I之外很少被发现,并且在缺乏已确定运动能力的生物体中常常以无功能的等位基因形式存在。pagM基因的缺失降低了细菌在0.3%琼脂糖低镁离子培养基上的复制,但在低镁离子液体培养基中没有影响。我们的发现定义了一种运动形式,它使沙门氏菌能够在低镁离子半固体环境中获取营养并逃避有毒化合物。

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Flagella-independent surface motility in Salmonella enterica serovar Typhimurium.鼠伤寒沙门氏菌中不依赖鞭毛的表面运动性
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