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嗜肺军团菌中的蛋白质分泌及其与毒力的关系。

Protein secretion in Legionella pneumophila and its relation to virulence.

作者信息

Lammertyn Elke, Anné Jozef

机构信息

Laboratory of Bacteriology, Rega Institute, Katholieke Universiteit Leuven, Minderbroedersstraat 10, B-3000 Leuven, Belgium.

出版信息

FEMS Microbiol Lett. 2004 Sep 15;238(2):273-9. doi: 10.1016/j.femsle.2004.07.056.

Abstract

Protein secretion is a universal process of fundamental importance for various aspects of cell physiology including the infection of a host organism by a bacterial pathogen. Many Gram-negative pathogens export virulence-associated proteins across one or two cell membranes to their place of action using a wide plethora of secretory pathways with the objective of infecting the host. For Legionella pneumophila, a facultative intracellular, human pathogen which is ubiquitously found in natural and artificial aquatic environments, two major secretory pathways known to be involved in virulence have been described. These are the PilD-dependent Lsp type II secretion pathway and the type IV secretion system encoded by the dot/icm genes. In addition, a second type IV system, with high sequence similarity to the Agrobacterium tumefaciens VirB system for conjugal transfer of oncogenic DNA, is present. Albeit dispensable for intracellular growth, this type IV system is important for efficient host cell infection at lower temperatures. Further more, evidence exists for the presence of at least one type I secretion system in L. pneumophila as well as for the presence of a twin arginine dependent translocation (Tat) pathway. This is a recently detected, signal peptide-dependent, secretion pathway complementary to the well-known Sec-dependent pathway for protein transport across the cytoplasmic membrane.

摘要

蛋白质分泌是一个普遍过程,对细胞生理学的各个方面都至关重要,包括细菌病原体对宿主生物体的感染。许多革兰氏阴性病原体利用大量的分泌途径,将与毒力相关的蛋白质穿过一层或两层细胞膜运输到其作用位点,目的是感染宿主。嗜肺军团菌是一种兼性胞内人类病原体,在自然和人工水环境中普遍存在,已描述了两种已知与毒力有关的主要分泌途径。这些途径是依赖PilD的Lsp II型分泌途径和由dot/icm基因编码的IV型分泌系统。此外,还存在第二种IV型系统,它与根癌土壤杆菌用于致癌DNA接合转移的VirB系统具有高度序列相似性。尽管该IV型系统对细胞内生长并非必需,但它对于在较低温度下有效感染宿主细胞很重要。此外,有证据表明嗜肺军团菌中存在至少一种I型分泌系统以及双精氨酸依赖转运(Tat)途径。这是一种最近检测到的、依赖信号肽的分泌途径,是与众所周知的依赖Sec的蛋白质跨细胞质膜运输途径互补的途径。

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