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首页> 外文期刊>Molecular Microbiology >The roles of the multiple CheW and CheA homologues in chemotaxis and in chemoreceptor localization in Rhodobacter sphaeroides.
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The roles of the multiple CheW and CheA homologues in chemotaxis and in chemoreceptor localization in Rhodobacter sphaeroides.

机译:多种CheW和CheA同源物在球形红球菌的趋化性和化学感受器定位中的作用。

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Rhodobacter sphaeroides has multiple homologues of most of the Escherichia coli chemotaxis genes, organized in two major operons and other, unlinked, loci. These include cheA1 and cheW1 (che Op1) and cheA2, cheW2 and cheW3 (che Op2). We have deleted each of these cheA and cheW homologues in-frame and examined the chemosensory behaviour of these strains on swarm plates and in tethered cell assays. In addition, we have examined the effect of these deletions on the polar localization of the chemoreceptor McpG. In E. coli, deletion of either cheA or cheW results in a non-chemotactic phenotype, and these strains also show no receptor clustering. Here, we demonstrate that CheW2 and CheA2 are required for the normal localization of McpG and for normal chemotactic responses under both aerobic and photoheterotrophic conditions. Under aerobic conditions, deletion of cheW3 has no significant effect on McpG localization and only has an effect on chemotaxis to shallow gradients in swarm plates. Under photoheterotrophic conditions, however, CheW3 is required for McpG localization and also for chemotaxis both on swarm plates and in the tethered cell assay. These phenotypes are not a direct result of delocalization of McpG, as this chemoreceptor does not mediate chemotaxis to any of the compounds tested and can therefore be considered a marker for general methyl-accepting chemotaxis protein (MCP) clustering. Thus, there is a correlation between the normal localization of McpG (and presumably other chemoreceptors) and chemotaxis. We propose a model in which the multiple different MCPs in R. sphaeroides are contained within a polar chemoreceptor cluster. Deletion of cheW2 and cheA2 under both aerobic and photoheterotrophic conditions, and cheW3 under photoheterotrophic conditions, disrupts the cluster and hence reduces chemotaxis to any compound sensed by these MCPs.
机译:球形红细菌具有大多数大肠杆菌趋化性基因的多个同源物,它们组织在两个主要操纵子和其他非连锁基因座中。这些包括ch​​eA1和cheW1(che Op1)以及cheA2,cheW2和cheW3(che Op2)。我们在框内删除了每个这些cheA和cheW同源物,并检查了这些菌株在群体平板和系留细胞测定中的化学感应行为。此外,我们已经检查了这些缺失对化学感受器McpG极性定位的影响。在大肠杆菌中,cheA或cheW的缺失会导致非趋化表型,并且这些菌株也未显示受体簇集。在这里,我们证明Chew2和CheA2是McpG的正常定位和有氧和光异养条件下正常趋化反应所必需的。在有氧条件下,cheW3的缺失对McpG的定位没有明显影响,而仅对趋向于群体平板中的浅梯度趋化有影响。然而,在光异养条件下,Chew3是McpG定位所必需的,也是群体平板和系留细胞测定中的趋化性所必需的。这些表型不是McpG脱域的直接结果,因为该化学感受器不介导任何测试化合物的趋化性,因此可以视为一般甲基接受趋化性蛋白(MCP)聚类的标记。因此,McpG(和大概其他化学感受器)的正常定位与趋化性之间存在相关性。我们提出了一个模型,其中球形红球菌中的多个不同MCP包含在极性化学感受器簇内。在有氧和光异养条件下,cheW2和cheA2的缺失,以及在光异养条件下,cheW3的缺失,破坏了簇,因此降低了对这些MCP检测到的任何化合物的趋化性。

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