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钙反应性质粒拷贝数调控依赖于假结核耶尔森氏菌中离散的 YopD 结构域。

Calcium-responsive plasmid copy number regulation is dependent on discrete YopD domains in Yersinia pseudotuberculosis.

机构信息

Department of Molecular Infection Biology, Helmholtz Center for Infection Research, Braunschweig, Germany.

Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.

出版信息

Plasmid. 2023 May;126:102683. doi: 10.1016/j.plasmid.2023.102683. Epub 2023 Apr 17.

Abstract

Yersinia pathogenicity depends mainly on a Type III Secretion System (T3SS) responsible for translocating effector proteins into the eukaryotic target cell cytosol. The T3SS is encoded on a 70 kb, low copy number virulence plasmid, pYV. A key T3SS regulator, YopD, is a multifunctional protein and consists of discrete modular domains that are essential for pore formation and translocation of Yop effectors. In Y. pseudotuberculosis, the temperature-dependent plasmid copy number increase that is essential for elevated T3SS gene dosage and virulence is also affected by YopD. Here, we found that the presence of intracellular YopD results in increased levels of the CopA-RNA and CopB, two inhibitors of plasmid replication. Secretion of YopD leads to decreased expression of copA and copB, resulting in increased plasmid copy number. Moreover, using a systematic mutagenesis of YopD mutants, we demonstrated that the same discrete modular domains important for YopD translocation are also necessary for both the regulation of plasmid copy number as well as copA and copB expression. Hence, Yersinia has evolved a mechanism coupling active secretion of a plasmid-encoded component of the T3SS, YopD, to the regulation of plasmid replication. Our work provides evidence for the cross-talk between plasmid-encoded functions with the IncFII replicon.

摘要

耶尔森氏菌的致病性主要取决于一种 III 型分泌系统(T3SS),该系统负责将效应蛋白易位到真核靶细胞质中。T3SS 编码在一个 70kb、低拷贝数的毒力质粒 pYV 上。一种关键的 T3SS 调节剂 YopD 是一种多功能蛋白,由离散的模块域组成,这些域对于形成孔和易位 Yop 效应物是必不可少的。在假结核耶尔森氏菌中,对于提高 T3SS 基因剂量和毒力至关重要的温度依赖性质粒拷贝数增加也受 YopD 影响。在这里,我们发现细胞内 YopD 的存在会导致 CopA-RNA 和 CopB 的水平升高,CopA 和 CopB 是质粒复制的抑制剂。YopD 的分泌导致 copA 和 copB 的表达减少,从而导致质粒拷贝数增加。此外,通过对 YopD 突变体的系统诱变,我们证明了对于 YopD 易位同样重要的离散模块域对于质粒拷贝数的调节以及 copA 和 copB 的表达也是必需的。因此,耶尔森氏菌已经进化出一种机制,将 T3SS 中一种质粒编码成分 YopD 的主动分泌与质粒复制的调节联系起来。我们的工作为质粒编码功能与 IncFII 复制子之间的交叉对话提供了证据。

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