Involvement of a Che‐like signal transduction cascade in regulating cyst cell development in Rhodospirillum centenum

生物 趋化性 鞭毛 信号转导 转导(生物物理学) 突变体 细胞生物学 基因 遗传学 生物化学 受体
作者
James E. Berleman,Carl E. Bauer
出处
期刊:Molecular Microbiology [Wiley]
卷期号:56 (6): 1457-1466 被引量:107
标识
DOI:10.1111/j.1365-2958.2005.04646.x
摘要

Summary Homologues of the E. coli chemotaxis (Che) signal transduction pathway are present in nearly all motile bacteria. Although E. coli contains only one Che cascade, many other bacteria are known to possess multiple sets of che genes. The role of multiple che ‐like gene clusters could potentially code for parallel Che‐like signal transduction pathways that have distinctly different input and output functions. In this study, we describe a che ‐like gene cluster in Rhodospirillum centenum that controls a developmental cycle. In‐frame deletion mutants of homologues of CheW ( ΔcheW 3a and ΔcheW 3b ), CheR ( ΔcheR 3 ), CheA ( Δ cheA 3 ) and a methyl‐accepting chemotaxis protein ( Δmcp 3 ) are defective in starvation‐induced formation of heat and desiccation resistant cyst cells. In contrast, mutants of homologues of CheY ( ΔcheY 3 ), CheB ( ΔcheB 3 ), and a second input kinase designated as CheS ( ΔcheS 3 ) result in cells that are derepressed in the formation of cysts. A model of signal transduction is presented in which there are three distinct Che‐like signal transduction cascades; one that is involved in chemotaxis, one that is involved in flagella biosynthesis and the third that is involved in cyst development.
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