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ParABS 介导的细菌染色体分离中的 CTP 开关及其以外的作用。

CTP switches in ParABS-mediated bacterial chromosome segregation and beyond.

机构信息

Department of Molecular Microbiology. John Innes Centre, Norwich NR4 7UH, United Kingdom.

Department of Molecular Microbiology. John Innes Centre, Norwich NR4 7UH, United Kingdom.

出版信息

Curr Opin Microbiol. 2023 Jun;73:102289. doi: 10.1016/j.mib.2023.102289. Epub 2023 Mar 3.

Abstract

Segregation of genetic material is a fundamental process in biology. In many bacterial species, segregation of chromosomes and low-copy plasmids is facilitated by the tripartite ParA-ParB-parS system. This system consists of a centromeric parS DNA site and interacting proteins ParA and ParB that are capable of hydrolyzing adenosine triphosphate and cytidine triphosphate (CTP), respectively. ParB first binds to parS before associating with adjacent DNA regions to spread outward from parS. These ParB-DNA complexes bind to ParA and, through repetitive cycles of ParA-ParB binding and unbinding, move the DNA cargo to each daughter cell. The recent discovery that ParB binds and hydrolyzes CTP as it cycles on and off the bacterial chromosome has dramatically changed our understanding of the molecular mechanism used by the ParABS system. Beyond bacterial chromosome segregation, CTP-dependent molecular switches are likely to be more widespread in biology than previously appreciated and represent an opportunity for new and unexpected avenues for future research and application.

摘要

遗传物质的分离是生物学中的一个基本过程。在许多细菌物种中,染色体和低拷贝质粒细胞的分离是由三联体 ParA-ParB-parS 系统促进的。该系统由一个着丝粒 parS DNA 位点和相互作用的蛋白质 ParA 和 ParB 组成,它们分别能够水解三磷酸腺苷和三磷酸胞苷(CTP)。ParB 首先与 parS 结合,然后与相邻的 DNA 区域结合,从 parS 向外扩散。这些 ParB-DNA 复合物与 ParA 结合,并通过 ParA-ParB 结合和分离的重复循环,将 DNA 运送到每个子细胞。最近的发现表明,ParB 在循环结合和脱离细菌染色体时结合并水解 CTP,这极大地改变了我们对 ParABS 系统使用的分子机制的理解。除了细菌染色体分离之外,依赖 CTP 的分子开关在生物学中可能比以前认为的更为普遍,为未来的研究和应用提供了新的、意想不到的机会。

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