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福氏志贺菌毒力质粒的维持受 Lon 和两个功能分区系统的影响。

Maintenance of the virulence plasmid in Shigella flexneri is influenced by Lon and two functional partitioning systems.

机构信息

Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford, OX1 3RE, UK.

出版信息

Mol Microbiol. 2019 May;111(5):1355-1366. doi: 10.1111/mmi.14225. Epub 2019 Mar 22.

Abstract

Members of the genus Shigella carry a large plasmid, pINV, which is essential for virulence. In Shigella flexneri, pINV harbours three toxin-antitoxin (TA) systems, CcdAB, GmvAT and VapBC that promote vertical transmission of the plasmid. Type II TA systems, such as those on pINV, consist of a toxic protein and protein antitoxin. Selective degradation of the antitoxin by proteases leads to the unopposed action of the toxin once genes encoding a TA system have been lost, such as following failure to inherit a plasmid harbouring a TA system. Here, we investigate the role of proteases in the function of the pINV TA systems and demonstrate that Lon, but not ClpP, is required for their activity during plasmid stability. This provides the first evidence that acetyltransferase family TA systems, such as GmvAT, can be regulated by Lon. Interestingly, S. flexneri pINV also harbours two putative partitioning systems, ParAB and StbAB. We show that both systems are functional for plasmid maintenance although their activity is masked by other systems on pINV. Using a model vector based on the pINV replicon, we observe temperature-dependent differences between the two partitioning systems that contribute to our understanding of the maintenance of virulence in Shigella species.

摘要

志贺氏菌属的成员携带一个大型质粒 pINV,该质粒对于毒力至关重要。在福氏志贺菌中,pINV 携带三个毒素-抗毒素(TA)系统,CcdAB、GmvAT 和 VapBC,促进质粒的垂直传递。II 型 TA 系统,如 pINV 上的系统,由一种毒性蛋白和蛋白抗毒素组成。一旦编码 TA 系统的基因丢失,例如在未能继承携带 TA 系统的质粒后,蛋白酶对抗毒素的选择性降解会导致毒素的拮抗作用。在这里,我们研究了蛋白酶在 pINV TA 系统功能中的作用,并证明 Lon,但不是 ClpP,是其在质粒稳定性期间活性所必需的。这首次证明了 GmvAT 等乙酰转移酶家族 TA 系统可以受到 Lon 的调节。有趣的是,福氏志贺菌的 pINV 还携带两个假定的分配系统,ParAB 和 StbAB。我们表明,尽管这两个系统的活性被 pINV 上的其他系统掩盖,但它们都对质粒的维持具有功能。使用基于 pINV 复制子的模型载体,我们观察到两个分配系统之间存在与温度相关的差异,这有助于我们理解志贺氏菌属物种中毒力的维持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d1b/6519299/663a32986fc1/MMI-111-1355-g001.jpg

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