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化学感受器 VfcA 在发光弧菌中介导氨基酸趋化作用。

Chemoreceptor VfcA mediates amino acid chemotaxis in Vibrio fischeri.

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin, Madison, Wisconsin, USA.

出版信息

Appl Environ Microbiol. 2013 Mar;79(6):1889-96. doi: 10.1128/AEM.03794-12. Epub 2013 Jan 11.

Abstract

Flagellar motility and chemotaxis by Vibrio fischeri are important behaviors mediating the colonization of its mutualistic host, the Hawaiian bobtail squid. However, none of the 43 putative methyl-accepting chemotaxis proteins (MCPs) encoded in the V. fischeri genome has been previously characterized. Using both an available transposon mutant collection and directed mutagenesis, we isolated mutants for 19 of these genes, and screened them for altered chemotaxis to six previously identified chemoattractants. Only one mutant was defective in responding to any of the tested compounds; the disrupted gene was thus named vfcA (Vibrio fischeri chemoreceptor A; locus tag VF_0777). In soft-agar plates, mutants disrupted in vfcA did not exhibit the serine-sensing chemotactic ring, and the pattern of migration in the mutant was not affected by the addition of exogenous serine. Using a capillary chemotaxis assay, we showed that, unlike wild-type V. fischeri, the vfcA mutant did not undergo chemotaxis toward serine and that expression of vfcA on a plasmid in the mutant was sufficient to restore the behavior. In addition to serine, we demonstrated that alanine, cysteine, and threonine are strong attractants for wild-type V. fischeri and that the attraction is also mediated by VfcA. This study thus provides the first insights into how V. fischeri integrates information from one of its 43 MCPs to respond to environmental stimuli.

摘要

发光杆菌的鞭毛运动和趋化性是调节其共生宿主夏威夷短尾乌贼定殖的重要行为。然而,发光杆菌基因组中编码的 43 个假定的甲基受体趋化蛋白(MCP)中,没有一个以前被描述过。我们使用现有的转座子突变体库和定向诱变,分离了其中 19 个基因的突变体,并对它们进行了六种先前鉴定的趋化剂的趋化性筛选。只有一个突变体对任何测试化合物的反应都有缺陷;因此,破坏的基因被命名为 vfcA(发光杆菌化学感受器 A;基因座标签 VF_0777)。在软琼脂平板上,vfcA 缺失突变体没有表现出丝氨酸感应趋化环,并且在突变体中,添加外源丝氨酸不会影响迁移模式。使用毛细管趋化性测定法,我们表明,与野生型发光杆菌不同,vfcA 突变体不会向丝氨酸趋化,并且在突变体中质粒上表达 vfcA 足以恢复该行为。除了丝氨酸,我们还证明了丙氨酸、半胱氨酸和苏氨酸是野生型发光杆菌的强引诱剂,并且这种引诱作用也是由 VfcA 介导的。因此,这项研究首次揭示了发光杆菌如何整合其 43 个 MCP 之一的信息来对环境刺激做出反应。

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