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该菌的IV型分泌系统具有两步分泌途径,通过内膜中间体分泌跨膜效应蛋白。

The T4bSS of features a two-step secretion pathway with an inner membrane intermediate for secretion of transmembrane effectors.

作者信息

Malmsheimer Silke, Grin Iwan, Bohn Erwin, Franz-Wachtel Mirita, Macek Boris, Sahr Tobias, Smollich Fabian, Chetrit David, Meir Amit, Roy Craig, Buchrieser Carmen, Wagner Samuel

机构信息

University of Tübingen, Interfaculty Institute of Microbiology and Infection Medicine (IMIT), Section of Cellular and Molecular Microbiology, Elfriede-Aulhorn-Str. 6, 72076 Tübingen, Germany.

Current address: Institut de Recherche en Infectiologie de Montpellier, Equipe Kremer, UMR 9004 - CNRS / UM, 1919 route de Mende, 34293 Montpellier cedex 5, France.

出版信息

bioRxiv. 2024 Mar 14:2024.03.14.584949. doi: 10.1101/2024.03.14.584949.

Abstract

To promote intracellular survival and infection, translocate hundreds of effector proteins into eukaryotic host cells using a type IV b protein secretion system (T4bSS). T4bSS are well known to translocate soluble as well as transmembrane domain-containing effector proteins (TMD-effectors) but the mechanisms of secretion are still poorly understood. Herein we investigated the secretion of hydrophobic TMD-effectors, of which about 80 were previously reported to be encoded by A proteomic analysis of fractionated membranes revealed that TMD-effectors are targeted to and inserted into the bacterial inner membranes of independent of the presence of a functional T4bSS. While the T4bSS chaperones IcmS and IcmW were critical for secretion of all tested TMD-effectors, they did not influence inner membrane targeting of these proteins. As for soluble effector proteins, translocation of TMD-effectors into host cells depended on a C-terminal secretion signal and this signal needed to be presented towards the cytoplasmic side of the inner membrane. A different secretion behavior of TMD- and soluble effectors and the need for small periplasmic loops within TMD-effectors provided strong evidence that TMD-effectors are secreted in a two-step secretion process: Initially, an inner membrane intermediate is formed, that is extracted towards the cytoplasmic side, possibly by the help of the type IV coupling protein complex and subsequently secreted into eukaryotic host cells by the T4bSS core complex. Overall, our study highlights the amazing versatility of T4bSS to secrete soluble and TMD-effectors from different subcellular locations of the bacterial cell.

摘要

为促进细胞内存活和感染,(该菌)利用IV型b蛋白分泌系统(T4bSS)将数百种效应蛋白转运到真核宿主细胞中。众所周知,T4bSS可转运可溶性效应蛋白以及含跨膜结构域的效应蛋白(TMD效应蛋白),但其分泌机制仍知之甚少。在此,我们研究了疏水性TMD效应蛋白的分泌情况,此前报道约有80种此类蛋白由[具体细菌名称]编码。对分级分离膜的蛋白质组分析表明,TMD效应蛋白靶向并插入到[具体细菌名称]的细菌内膜中,这一过程与功能性T4bSS的存在无关。虽然T4bSS分子伴侣IcmS和IcmW对所有测试的TMD效应蛋白的分泌至关重要,但它们并不影响这些蛋白在内膜上的靶向定位。至于可溶性效应蛋白,TMD效应蛋白向宿主细胞的转运依赖于C端分泌信号,且该信号需要朝向内膜的胞质侧。TMD效应蛋白和可溶性效应蛋白不同的分泌行为以及TMD效应蛋白中对小周质环的需求,有力地证明了TMD效应蛋白是通过两步分泌过程分泌的:首先,形成一个内膜中间体,该中间体可能借助IV型偶联蛋白复合物向胞质侧提取,随后由T4bSS核心复合物分泌到真核宿主细胞中。总体而言,我们的研究突出了T4bSS从细菌细胞不同亚细胞位置分泌可溶性和TMD效应蛋白的惊人多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9105/10980071/564af20748be/nihpp-2024.03.14.584949v1-f0001.jpg

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