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肽聚糖结合蛋白 FimV 促进铜绿假单胞菌 IV 型菌毛分泌蛋白的组装。

The peptidoglycan-binding protein FimV promotes assembly of the Pseudomonas aeruginosa type IV pilus secretin.

机构信息

Department of Biochemistry and Biomedical Sciences, Michael G. DeGroote Institute for Infectious Diseases Research, University McMaster University, Hamilton, ON, Canada.

出版信息

J Bacteriol. 2011 Jan;193(2):540-50. doi: 10.1128/JB.01048-10. Epub 2010 Nov 19.

Abstract

The Pseudomonas aeruginosa inner membrane protein FimV is among several proteins of unknown function required for type IV pilus-mediated twitching motility, arising from extension and retraction of pili from their site of assembly in the inner membrane. The pili transit the periplasm and peptidoglycan (PG) layer, ultimately exiting the cell through the PilQ secretin. Although fimV mutants are nonmotile, they are susceptible to killing by pilus-specific bacteriophage, a hallmark of retractable surface pili. Here we show that levels of recoverable surface pili were markedly decreased in fimV pilT retraction-deficient mutants compared with levels in the pilT control, demonstrating that FimV acts at the level of pilus assembly. Levels of inner membrane assembly subcomplex proteins PilM/N/O/P were decreased in fimV mutants, but supplementation of these components in trans did not restore pilus assembly or motility. Loss of FimV dramatically reduced the levels of the PilQ secretin multimer through which pili exit the cell, in part due to decreased levels of PilQ monomers, while PilF pilotin levels were unchanged. Expression of pilQ in trans in the wild type or fimV mutants increased total PilQ monomer levels but did not alter secretin multimer levels or motility. PG pulldown assays showed that the N terminus of FimV bound PG in a LysM motif-dependent manner, and a mutant with an in-frame chromosomal deletion of the LysM motif had reduced motility, secretin levels, and surface piliation. Together, our data show that FimV's role in pilus assembly is to promote secretin formation and that this function depends upon its PG-binding domain.

摘要

铜绿假单胞菌内膜蛋白 FimV 是几种未知功能蛋白之一,这些蛋白对于 IV 型菌毛介导的翻滚运动是必需的,这种运动源于菌毛从内膜上的组装位点延伸和缩回。菌毛穿过周质和肽聚糖 (PG) 层,最终通过 PilQ 分泌孔穿出细胞。虽然 fimV 突变体是非运动的,但它们容易被菌毛特异性噬菌体杀死,这是可缩回表面菌毛的标志。在这里,我们表明,与 pilT 对照相比,fimV pilT 回缩缺陷突变体中可回收的表面菌毛水平明显降低,这表明 FimV 作用于菌毛组装水平。fimV 突变体中内膜组装亚基蛋白 PilM/N/O/P 的水平降低,但这些成分的转位补充并没有恢复菌毛组装或运动。FimV 的缺失极大地降低了通过该细胞离开的菌毛的 PilQ 分泌孔多聚体的水平,部分原因是 PilQ 单体水平降低,而 PilF 导丝蛋白水平不变。在野生型或 fimV 突变体中转录表达 pilQ 增加了总 PilQ 单体水平,但不改变分泌孔多聚体水平或运动。PG 下拉测定表明,FimV 的 N 端以 LysM 基序依赖的方式结合 PG,并且 LysM 基序的染色体缺失突变体的运动性、分泌孔水平和表面菌毛形成能力降低。总之,我们的数据表明,FimV 在菌毛组装中的作用是促进分泌孔的形成,而这种功能依赖于其 PG 结合结构域。

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