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首页> 外文期刊>Trends in Microbiology >CheV: CheW-like coupling proteins at the core of the chemotaxis signaling network
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CheV: CheW-like coupling proteins at the core of the chemotaxis signaling network

机译:CheV:CheW样耦合蛋白在趋化性信号网络的核心

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摘要

Microbes have chemotactic signaling systems that enable them to detect and follow chemical gradients in their environments. The core of these sensory systems consists of chemoreceptor proteins coupled to the CheA kinase via the scaffold or coupler protein CheW. Some bacterial chemotaxis systems replace or augment CheW with a related protein, CheV, which is less well understood. CheV consists of a CheW domain fused to a receiver domain that is capable of being phosphorylated. Our review of the literature, as well as comparisons of the CheV and CheW sequence and structure, suggest that CheV proteins conserve CheW residues that are crucial for coupling. Phosphorylation of the CheV receiver domain might adjust the efficiency of its coupling and thus allow the system to modulate the response to chemical stimuli in an adaptation process.
机译:微生物具有趋化信号系统,使它们能够检测和跟踪环境中的化学梯度。这些感觉系统的核心由通过支架或偶联蛋白CheW与CheA激酶偶联的化学感受器蛋白组成。一些细菌趋化性系统用相关的蛋白质CheV替代或增强了CheW,人们对此知之甚少。 CheV由融合到能够被磷酸化的受体域的CheW域组成。我们对文献的回顾以及对CheV和CheW序列和结构的比较表明,CheV蛋白保留了CheW残基,这些残基对偶联至关重要。 CheV受体域的磷酸化可能会调节其偶联效率,从而使系统能够在适应过程中调节对化学刺激的反应。

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