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IX 型分泌系统的蛋白质互作组分析鉴定出 PorW 是 PorK/N 环复合物与 Sov 转位器之间缺失的连接蛋白。

Protein Interactome Analysis of the Type IX Secretion System Identifies PorW as the Missing Link between the PorK/N Ring Complex and the Sov Translocon.

机构信息

Oral Health Cooperative Research Centre, Melbourne Dental School, Bio21 Institute, The University of Melbournegrid.1008.9, Parkville, Victoria, Australia.

Laboratoire d'Ingénierie des Systémes Macromoléculaires (LISM - UMR7255), Institut de Microbiologie, Bioénergies et Biotechnologie (IM2B), CNRS - Aix-Marseille Universite, Marseille, France.

出版信息

Microbiol Spectr. 2022 Feb 23;10(1):e0160221. doi: 10.1128/spectrum.01602-21. Epub 2022 Jan 12.

Abstract

The type IX secretion system (T9SS) transports cargo proteins through the outer membrane of and attaches them to the cell surface for functions including pathogenesis, gliding motility, and degradation of carbon sources. The T9SS comprises at least 20 different proteins and includes several modules: the trans-envelope core module comprising the PorL/M motor and the PorK/N ring, the outer membrane Sov translocon, and the cell attachment complex. However, the spatial organization of these modules is unknown. We have characterized the protein interactome of the Sov translocon in Porphyromonas gingivalis and identified Sov-PorV-PorA as well as Sov-PorW-PorN-PorK to be novel networks. PorW also interacted with PGN_1783 (PorD), which was required for maximum secretion efficiency. The identification of PorW as the missing link completes a continuous interaction network from the PorL/M motor to the Sov translocon, providing a pathway for cargo delivery and energy transduction from the inner membrane to the secretion pore. The T9SS is a newly identified protein secretion system of the -- superphylum used by pathogens associated with diseases of humans, fish, and poultry for the secretion and cell surface attachment of virulence factors. The T9SS comprises three known modules: (i) the trans-envelope core module comprising the PorL/M motor and the PorK/N ring, (ii) the outer membrane Sov translocon, and (iii) the cell surface attachment complex. The spatial organization and interaction of these modules have been a mystery. Here, we describe the protein interactome of the Sov translocon in the human pathogen Porphyromonas gingivalis and have identified PorW as the missing link which bridges PorN with Sov and so completes a continuous interaction network from the PorL/M motor to the Sov translocon, providing, for the first time, a pathway for cargo delivery and energy transduction from the inner membrane to the secretion pore.

摘要

IX 型分泌系统(T9SS)将货物蛋白穿过 和的外膜运输,并将它们附着在细胞表面以发挥功能,包括发病机制、滑行运动和碳源降解。T9SS 由至少 20 种不同的蛋白质组成,包括几个模块:跨膜核心模块,包括 PorL/M 发动机和 PorK/N 环、外膜 Sov 转运子,以及细胞附着复合物。然而,这些模块的空间组织尚不清楚。我们已经对牙龈卟啉单胞菌中的 Sov 转运子的蛋白质互作组进行了表征,并鉴定出 Sov-PorV-PorA 以及 Sov-PorW-PorN-PorK 为新的网络。PorW 还与 PGN_1783(PorD)相互作用,这是最大分泌效率所必需的。PorW 的鉴定完成了一个从 PorL/M 发动机到 Sov 转运子的连续相互作用网络,为货物从内膜传递到分泌孔以及能量传递提供了途径。T9SS 是 -- 超门中一种新发现的蛋白质分泌系统,用于与人类、鱼类和家禽疾病相关的病原体分泌和细胞表面附着毒力因子。T9SS 由三个已知的模块组成:(i)跨膜核心模块,包括 PorL/M 发动机和 PorK/N 环,(ii)外膜 Sov 转运子,和(iii)细胞表面附着复合物。这些模块的空间组织和相互作用一直是个谜。在这里,我们描述了人类病原体牙龈卟啉单胞菌中 Sov 转运子的蛋白质互作组,并鉴定出 PorW 是连接 PorN 与 Sov 的缺失环节,从而完成了一个从 PorL/M 发动机到 Sov 转运子的连续相互作用网络,首次为货物从内膜传递到分泌孔以及能量传递提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1006/8754138/c0d9af51a587/spectrum.01602-21-f001.jpg

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