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肽聚糖合酶在单核细胞增生李斯特菌生长、细胞分裂及毒力中的离散和重叠功能

Discrete and overlapping functions of peptidoglycan synthases in growth, cell division and virulence of Listeria monocytogenes.

作者信息

Rismondo Jeanine, Möller Lars, Aldridge Christine, Gray Joe, Vollmer Waldemar, Halbedel Sven

机构信息

FG11 Division of Enteropathogenic Bacteria and Legionella, Robert Koch Institute, Burgstrasse 37, 38855, Wernigerode, Germany.

出版信息

Mol Microbiol. 2015 Jan;95(2):332-51. doi: 10.1111/mmi.12873. Epub 2014 Dec 19.

Abstract

Upon ingestion of contaminated food, Listeria monocytogenes can cause serious infections in humans that are normally treated with β-lactam antibiotics. These target Listeria's five high molecular weight penicillin-binding proteins (HMW PBPs), which are required for peptidoglycan biosynthesis. The two bi-functional class A HMW PBPs PBP A1 and PBP A2 have transglycosylase and transpeptidase domains catalyzing glycan chain polymerization and peptide cross-linking, respectively, whereas the three class B HMW PBPs B1, B2 and B3 are monofunctional transpeptidases. The precise roles of these PBPs in the cell cycle are unknown. Here we show that green fluorescent protein (GFP)-PBP fusions localized either at the septum, the lateral wall or both, suggesting distinct and overlapping functions. Genetic data confirmed this view: PBP A1 and PBP A2 could not be inactivated simultaneously, and a conditional double mutant strain is largely inducer dependent. PBP B1 is required for rod-shape and PBP B2 for cross-wall biosynthesis and viability, whereas PBP B3 is dispensable for growth and cell division. PBP B1 depletion dramatically increased β-lactam susceptibilities and stimulated spontaneous autolysis but had no effect on peptidoglycan cross-linkage. Our in vitro virulence assays indicated that the complete set of all HMW PBPs is required for maximal virulence.

摘要

摄入受污染食物后,单核细胞增生李斯特菌可在人类中引发严重感染,通常用β-内酰胺类抗生素进行治疗。这些抗生素作用于李斯特菌的五种高分子量青霉素结合蛋白(HMW PBPs),它们是肽聚糖生物合成所必需的。两种双功能A类HMW PBPs,即PBP A1和PBP A2,分别具有转糖基酶和转肽酶结构域,催化聚糖链聚合和肽交联,而三种B类HMW PBPs,即B1、B2和B3是单功能转肽酶。这些PBPs在细胞周期中的精确作用尚不清楚。在此我们表明,绿色荧光蛋白(GFP)-PBP融合蛋白定位于隔膜、侧壁或两者,表明其功能各异且相互重叠。遗传数据证实了这一观点:PBP A1和PBP A2不能同时失活,条件性双突变菌株在很大程度上依赖诱导剂。PBP B1是杆状形态所必需的,PBP B2是横壁生物合成和生存能力所必需的,而PBP B3对生长和细胞分裂是可有可无的。PBP B1的缺失显著增加了对β-内酰胺的敏感性并刺激了自发自溶,但对肽聚糖交联没有影响。我们的体外毒力试验表明,所有HMW PBPs的完整组合对于最大毒力是必需的。

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