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细菌中与重金属耐受相关的两种组分调控系统的进化分析和侧向基因转移。

Evolutionary analysis and lateral gene transfer of two-component regulatory systems associated with heavy-metal tolerance in bacteria.

机构信息

Department of Biological Sciences, Bowling Green State University, Bowling Green, OH 43403, USA.

出版信息

J Mol Evol. 2013 May;76(5):267-79. doi: 10.1007/s00239-013-9558-z. Epub 2013 Apr 16.

DOI:10.1007/s00239-013-9558-z
PMID:23588684
Abstract

Microorganisms have adapted intricate signal transduction mechanisms to coordinate tolerance to toxic levels of metals, including two-component regulatory systems (TCRS). In particular, both cop and czc operons are regulated by TCRS; the cop operon plays a key role in bacterial tolerance to copper, whereas the czc operon is involved in the efflux of cadmium, zinc, and cobalt from the cell. Although the molecular physiology of heavy metal tolerance genes has been extensively studied, their evolutionary relationships are not well-understood. Phylogenetic relationships among heavy-metal efflux proteins and their corresponding two-component regulatory proteins revealed orthologous and paralogous relationships from species divergences and ancient gene duplications. The presence of heavy metal tolerance genes on bacterial plasmids suggests these genes may be prone to spread through horizontal gene transfer. Phylogenetic inferences revealed nine potential examples of lateral gene transfer associated with metal efflux proteins and two examples for regulatory proteins. Notably, four of the examples suggest lateral transfer across major evolutionary domains. In most cases, differences in GC content in metal tolerance genes and their corresponding host genomes confirmed lateral gene transfer events. Three-dimensional protein structures predicted for the response regulators encoded by cop and czc operons showed a high degree of structural similarity with other known proteins involved in TCRS signal transduction, which suggests common evolutionary origins of functional phenotypes and similar mechanisms of action for these response regulators.

摘要

微生物已经进化出复杂的信号转导机制,以协调对有毒金属水平的耐受,包括双组分调节系统(TCRS)。特别是,cop 和 czc 操纵子都受 TCRS 调节;cop 操纵子在细菌耐受铜方面起着关键作用,而 czc 操纵子则参与细胞内镉、锌和钴的外排。尽管重金属耐受基因的分子生理学已经得到了广泛的研究,但它们的进化关系还不是很清楚。重金属外排蛋白及其相应的双组分调节蛋白之间的系统发育关系揭示了物种分化和古老基因复制所产生的直系同源和旁系同源关系。细菌质粒上存在重金属耐受基因表明这些基因可能容易通过水平基因转移传播。系统发育推断揭示了与金属外排蛋白相关的 9 个潜在的水平基因转移例子,以及 2 个与调节蛋白相关的例子。值得注意的是,其中 4 个例子表明跨越主要进化领域的横向基因转移。在大多数情况下,金属耐受基因与其相应宿主基因组之间 GC 含量的差异证实了水平基因转移事件的发生。cop 和 czc 操纵子编码的响应调节蛋白的三维蛋白质结构预测显示出与其他参与 TCRS 信号转导的已知蛋白质高度的结构相似性,这表明这些响应调节蛋白具有共同的进化起源和相似的作用机制。

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