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野油菜黄单胞菌中的群体感应与毒力调控

Quorum sensing and virulence regulation in Xanthomonas campestris.

作者信息

He Ya-Wen, Zhang Lian-Hui

机构信息

Institute of Molecular and Cell Biology, Singapore, Singapore.

出版信息

FEMS Microbiol Rev. 2008 Aug;32(5):842-57. doi: 10.1111/j.1574-6976.2008.00120.x. Epub 2008 Jun 28.

DOI:10.1111/j.1574-6976.2008.00120.x
PMID:18557946
Abstract

It is now clear that cell-cell communication, often referred to as quorum sensing (QS), is the norm in the prokaryotic kingdom and this community-wide genetic regulatory mechanism has been adopted for regulation of many important biological functions. Since the 1980s, several types of QS signals have been identified, which are associated commonly with different types of QS mechanisms. Among them, the diffusible signal factor (DSF)-dependent QS system, originally discovered from bacterial pathogen Xanthomonas campestris pv. campestris, is a relatively new regulatory mechanism. The rapid research progress over the last few years has identified the chemical structure of the QS signal DSF, established the DSF regulon, and unveiled the general signaling pathways and mechanisms. Particular noteworthy are that DSF biosynthesis is modulated by a novel posttranslational autoinduction mechanism involving protein-protein interaction between the DSF synthase RpfF and the sensor RpfC, and that QS signal sensing is coupled to intracellular regulatory networks through a second messenger cyclic-di-GMP and a global regulator Clp. Genomic and genetic analyses show that the DSF QS-signaling pathway regulates diverse biological functions including virulence, biofilm dispersal, and ecological competence. Moreover, evidence is emerging that the DSF QS system is conserved in a range of plant and human bacterial pathogens.

摘要

现在已经清楚,细胞间通讯,通常称为群体感应(QS),在原核生物界是常态,并且这种全群体遗传调控机制已被用于调节许多重要的生物学功能。自20世纪80年代以来,已鉴定出几种类型的QS信号,它们通常与不同类型的QS机制相关。其中,可扩散信号因子(DSF)依赖性QS系统最初是从细菌病原体野油菜黄单胞菌野油菜致病变种中发现的,是一种相对较新的调控机制。过去几年的快速研究进展确定了QS信号DSF的化学结构,建立了DSF调控子,并揭示了一般的信号通路和机制。特别值得注意的是,DSF生物合成由一种新的翻译后自诱导机制调节,该机制涉及DSF合酶RpfF与传感器RpfC之间的蛋白质-蛋白质相互作用,并且QS信号感应通过第二信使环二鸟苷酸和全局调节因子Clp与细胞内调控网络耦合。基因组和遗传分析表明,DSF QS信号通路调节多种生物学功能,包括毒力、生物膜分散和生态适应性。此外,越来越多的证据表明,DSF QS系统在一系列植物和人类细菌病原体中是保守的。

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