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环二鸟苷酸:一种新型细菌信号系统的兴起

C-di-GMP: the dawning of a novel bacterial signalling system.

作者信息

Römling Ute, Gomelsky Mark, Galperin Michael Y

机构信息

Microbiology and Tumor Biology Center, Karolinska Institutet, Box 280, SE-17177 Stockholm, Sweden.

出版信息

Mol Microbiol. 2005 Aug;57(3):629-39. doi: 10.1111/j.1365-2958.2005.04697.x.

Abstract

Bis-(3'-5')-cyclic dimeric guanosine monophosphate (c-di-GMP) has come to the limelight as a result of the recent advances in microbial genomics and increased interest in multicellular microbial behaviour. Known for more than 15 years as an activator of cellulose synthase in Gluconacetobacter xylinus, c-di-GMP is emerging as a novel global second messenger in bacteria. The GGDEF and EAL domain proteins involved in c-di-GMP synthesis and degradation, respectively, are (almost) ubiquitous in bacterial genomes. These proteins affect cell differentiation and multicellular behaviour as well as interactions between the microorganisms and their eukaryotic hosts and other phenotypes. While the role of GGDEF and EAL domain proteins in bacterial physiology and behaviour has gained appreciation, and significant progress has been achieved in understanding the enzymology of c-di-GMP turnover, many questions regarding c-di-GMP-dependent signalling remain unanswered. Among these, the key questions are the identity of targets of c-di-GMP action and mechanisms of c-di-GMP-dependent regulation. This review discusses phylogenetic distribution of the c-di-GMP signalling pathway in bacteria, recent developments in biochemical and structural characterization of proteins involved in its metabolism, and biological processes affected by c-di-GMP. The accumulated data clearly indicate that a novel ubiquitous signalling system in bacteria has been discovered.

摘要

双(3'-5')-环二鸟苷单磷酸(c-di-GMP)因微生物基因组学的最新进展以及对多细胞微生物行为的兴趣增加而备受关注。15 年多来,c-di-GMP 一直作为木醋杆菌中纤维素合酶的激活剂为人所知,如今它正成为细菌中一种新型的全局第二信使。分别参与 c-di-GMP 合成和降解的 GGDEF 和 EAL 结构域蛋白在细菌基因组中(几乎)无处不在。这些蛋白影响细胞分化和多细胞行为,以及微生物与其真核宿主之间的相互作用和其他表型。虽然 GGDEF 和 EAL 结构域蛋白在细菌生理学和行为中的作用已得到认可,并且在理解 c-di-GMP 周转的酶学方面取得了重大进展,但关于 c-di-GMP 依赖性信号传导的许多问题仍未得到解答。其中,关键问题是 c-di-GMP 作用靶点的身份以及 c-di-GMP 依赖性调节的机制。本综述讨论了细菌中 c-di-GMP 信号通路的系统发育分布、参与其代谢的蛋白质的生化和结构表征的最新进展,以及受 c-di-GMP 影响的生物学过程。积累的数据清楚地表明,已发现细菌中一种新型的普遍存在的信号系统。

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