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SecY 中的 prl 突变可抑制单核细胞增生李斯特菌 secA2 突变体的分泌和毒力缺陷。

A prl mutation in SecY suppresses secretion and virulence defects of Listeria monocytogenes secA2 mutants.

作者信息

Durack Juliana, Burke Thomas P, Portnoy Daniel A

机构信息

Department of Molecular and Cell Biology, University of California Berkeley, Berkeley, California, USA.

Department of Molecular and Cell Biology, University of California Berkeley, Berkeley, California, USA School of Public Health, University of California Berkeley, Berkeley, California, USA

出版信息

J Bacteriol. 2015 Mar;197(5):932-42. doi: 10.1128/JB.02284-14. Epub 2014 Dec 22.

Abstract

The bulk of bacterial protein secretion occurs through the conserved SecY translocation channel that is powered by SecA-dependent ATP hydrolysis. Many Gram-positive bacteria, including the human pathogen Listeria monocytogenes, possess an additional nonessential specialized ATPase, SecA2. SecA2-dependent secretion is required for normal cell morphology and virulence in L. monocytogenes; however, the mechanism of export via this pathway is poorly understood. L. monocytogenes secA2 mutants form rough colonies, have septation defects, are impaired for swarming motility, and form small plaques in tissue culture cells. In this study, 70 spontaneous mutants were isolated that restored swarming motility to L. monocytogenes secA2 mutants. Most of the mutants had smooth colony morphology and septated normally, but all were lysozyme sensitive. Five representative mutants were subjected to whole-genome sequencing. Four of the five had mutations in proteins encoded by the lmo2769 operon that conferred lysozyme sensitivity and increased swarming but did not rescue virulence defects. A point mutation in secY was identified that conferred smooth colony morphology to secA2 mutants, restored wild-type plaque formation, and increased virulence in mice. This secY mutation resembled a prl suppressor known to expand the repertoire of proteins secreted through the SecY translocation complex. Accordingly, the ΔsecA2prlA1 mutant showed wild-type secretion levels of P60, an established SecA2-dependent secreted autolysin. Although the prl mutation largely suppressed almost all of the measurable SecA2-dependent traits, the ΔsecA2prlA1 mutant was still less virulent in vivo than the wild-type strain, suggesting that SecA2 function was still required for pathogenesis.

摘要

大部分细菌蛋白质分泌是通过保守的SecY易位通道进行的,该通道由SecA依赖的ATP水解提供动力。许多革兰氏阳性菌,包括人类病原体单核细胞增生李斯特菌,都拥有一种额外的非必需特殊ATP酶SecA2。在单核细胞增生李斯特菌中,SecA2依赖的分泌对于正常细胞形态和毒力是必需的;然而,通过该途径的输出机制却知之甚少。单核细胞增生李斯特菌secA2突变体形成粗糙菌落,有隔膜缺陷,群体运动受损,并且在组织培养细胞中形成小噬斑。在本研究中,分离出70个自发突变体,它们恢复了单核细胞增生李斯特菌secA2突变体的群体运动能力。大多数突变体具有光滑的菌落形态且隔膜正常,但都对溶菌酶敏感。对五个代表性突变体进行了全基因组测序。五个突变体中有四个在由lmo2769操纵子编码的蛋白质中发生了突变,这些突变赋予了溶菌酶敏感性并增强了群体运动,但没有挽救毒力缺陷。在secY中鉴定出一个点突变,该突变赋予secA2突变体光滑的菌落形态,恢复了野生型噬斑形成,并增强了小鼠的毒力。这个secY突变类似于已知的prl抑制子,可扩大通过SecY易位复合体分泌的蛋白质库。因此,ΔsecA2prlA1突变体显示出P60(一种已确定的SecA2依赖分泌的自溶素)的野生型分泌水平。尽管prl突变在很大程度上抑制了几乎所有可测量的SecA2依赖性状,但ΔsecA2prlA1突变体在体内的毒力仍低于野生型菌株,这表明发病机制仍需要SecA2的功能。

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