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黏细菌的双组分系统:结构、多样性及进化关系

Two-component systems of the myxobacteria: structure, diversity and evolutionary relationships.

作者信息

Whitworth David E, Cock Peter J A

机构信息

Institute of Biological Sciences, Cledwyn Building, Aberystwyth University,Ceredigion SY23 3DD, UK.

Department of Biological Sciences, University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, UK.

出版信息

Microbiology (Reading). 2008 Feb;154(Pt 2):360-372. doi: 10.1099/mic.0.2007/013672-0.

Abstract

Two-component systems (TCSs) are a large family of signalling pathways characterized by the successive transfer of phosphoryl groups between the histidine and aspartate residues of paired histidine kinase and response regulator proteins. With the availability of genome sequences for four genera of myxobacteria it has become possible to assess the genomic complements of myxobacterial TCS genes and to characterize features of their organization and evolutionary heritage. In this study we have compiled lists of the TCS genes within myxobacterial genomes and characterized their domain architecture, gene organization and evolutionary relationships. In order to provide an appropriate context for our conclusions, where possible we have compared myxobacterial TCSs with those found in 316 other completely sequenced bacteria. Myxobacteria have the largest number of TCSs of any organisms. An unusually low proportion of TCS genes are paired in myxobacterial genomes, and myxobacterial histidine kinases also seem to sense internal signals to an unusual degree. Phylogenetic evidence has allowed us to suggest homologous relationships of proteins across the myxobacteria, and it appears that myxobacterial TCS evolution has been dominated by duplications, gene rearrangements and changes in sensory domain complements. The systematic classification of the TCS proteins of the myxobacteria presented here should also provide a framework for future experimental studies on two-component regulation in these organisms.

摘要

双组分系统(TCSs)是一大类信号通路,其特征在于磷酸基团在配对的组氨酸激酶和响应调节蛋白的组氨酸和天冬氨酸残基之间连续转移。随着四种黏细菌属基因组序列的可得,评估黏细菌TCS基因的基因组组成并表征其组织特征和进化遗传成为可能。在本研究中,我们编制了黏细菌基因组内TCS基因列表,并表征了它们的结构域结构、基因组织和进化关系。为了为我们的结论提供适当的背景,我们尽可能地将黏细菌TCS与在其他316种完全测序细菌中发现的TCS进行了比较。黏细菌拥有任何生物体中数量最多的TCS。黏细菌基因组中TCS基因配对的比例异常低,而且黏细菌组氨酸激酶似乎在异常程度上感知内部信号。系统发育证据使我们能够提出黏细菌中蛋白质的同源关系,而且似乎黏细菌TCS进化一直由重复、基因重排和传感结构域组成的变化主导。这里提出的黏细菌TCS蛋白的系统分类也应为这些生物体中双组分调节的未来实验研究提供一个框架。

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