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环二鸟苷酸介导的毒力和生物膜形成调控

c-di-GMP-mediated regulation of virulence and biofilm formation.

作者信息

Cotter Peggy A, Stibitz Scott

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of California, Santa Barbara, Santa Barbara, CA 93106-9610, USA.

出版信息

Curr Opin Microbiol. 2007 Feb;10(1):17-23. doi: 10.1016/j.mib.2006.12.006. Epub 2007 Jan 8.

Abstract

It is now apparent that the signaling molecule 3',5'-cyclic diguanylic acid (c-di-GMP) is a central regulator of the prokaryote biofilm lifestyle and recent evidence also links this molecule to virulence. Environmentally responsive signal transduction systems that control expression and/or activity of the enzymes (GGDEF and EAL domain containing proteins) that are responsible for synthesis and degradation of c-di-GMP have recently been identified. Members of the phosphorelay family feature prominently amongst these systems, which include several with hybrid polydomain sensors and one that is similar to well-characterized chemotaxis-controlling pathways. These findings support the hypothesis that c-di-GMP levels are tightly controlled in response to a broad range, in terms of both diversity and intensity, of extracellular signals. Insight into how c-di-GMP affects changes in gene expression and/or protein activity has come from the demonstration that proteins containing the PilZ domain can bind c-di-GMP and control phenotypes involved in biofilm formation and virulence. These recent developments should pave the way for researchers to answer the important question of how a vast array of extracellular signals that are sensed by multiple sensory transduction pathways which all lead to the production or destruction of c-di-GMP are coordinated such that the appropriate phenotypic response is produced.

摘要

现在很明显,信号分子3',5'-环二鸟苷酸(c-di-GMP)是原核生物生物膜生活方式的核心调节因子,最近的证据还将该分子与毒力联系起来。最近已经鉴定出环境响应信号转导系统,该系统控制负责c-di-GMP合成和降解的酶(含GGDEF和EAL结构域的蛋白质)的表达和/或活性。磷酸化信号转导家族的成员在这些系统中显著存在,其中包括几个具有混合多结构域传感器的系统以及一个与特征明确的趋化性控制途径相似的系统。这些发现支持了这样的假设,即c-di-GMP水平会根据细胞外信号在多样性和强度方面的广泛范围受到严格控制。对c-di-GMP如何影响基因表达和/或蛋白质活性变化的深入了解来自于这样的证明,即含有PilZ结构域的蛋白质可以结合c-di-GMP并控制参与生物膜形成和毒力的表型。这些最新进展应该为研究人员回答一个重要问题铺平道路,即如何协调由多种感觉转导途径感知的大量细胞外信号,这些信号都导致c-di-GMP的产生或破坏,从而产生适当的表型反应。

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