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重新定义细菌 I 型蛋白分泌系统。

Redefining the bacterial Type I protein secretion system.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD, Australia.

Institute of Immunology and Immunotherapy, University of Birmingham, Birmingham, United Kingdom.

出版信息

Adv Microb Physiol. 2023;82:155-204. doi: 10.1016/bs.ampbs.2022.10.003. Epub 2022 Dec 5.

Abstract

Type I secretion systems (T1SS) are versatile molecular machines for protein transport across the Gram-negative cell envelope. The archetypal Type I system mediates secretion of the Escherichia coli hemolysin, HlyA. This system has remained the pre-eminent model of T1SS research since its discovery. The classic description of a T1SS is composed of three proteins: an inner membrane ABC transporter, a periplasmic adaptor protein and an outer membrane factor. According to this model, these components assemble to form a continuous channel across the cell envelope, an unfolded substrate molecule is then transported in a one-step mechanism, directly from the cytosol to the extracellular milieu. However, this model does not encapsulate the diversity of T1SS that have been characterized to date. In this review, we provide an updated definition of a T1SS, and propose the subdivision of this system into five subgroups. These subgroups are categorized as T1SSa for RTX proteins, T1SSb for non-RTX Ca-binding proteins, T1SSc for non-RTX proteins, T1SSd for class II microcins, and T1SSe for lipoprotein secretion. Although often overlooked in the literature, these alternative mechanisms of Type I protein secretion offer many avenues for biotechnological discovery and application.

摘要

I 型分泌系统(T1SS)是一种多功能的分子机器,可将蛋白质穿过革兰氏阴性细胞包膜进行运输。典型的 I 型系统介导大肠杆菌溶血素 HlyA 的分泌。自发现以来,该系统一直是 T1SS 研究的卓越模型。T1SS 的经典描述由三种蛋白质组成:内膜 ABC 转运蛋白、周质内衔接蛋白和外膜因子。根据该模型,这些组件组装形成穿过细胞包膜的连续通道,未折叠的底物分子然后以一步机制直接从细胞质运输到细胞外环境。然而,该模型并未包含迄今为止已被表征的多样化的 T1SS。在这篇综述中,我们提供了 T1SS 的更新定义,并提出将该系统细分为五个亚组。这些亚组被归类为 RTX 蛋白的 T1SSa、非 RTX Ca 结合蛋白的 T1SSb、非 RTX 蛋白的 T1SSc、II 类微菌素的 T1SSd 和脂蛋白分泌的 T1SSe。尽管在文献中经常被忽视,但这些 I 型蛋白分泌的替代机制为生物技术的发现和应用提供了许多途径。

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