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铜绿假单胞菌中XcpR和PilB的共有ATP结合位点发生突变会消除细胞外蛋白分泌和菌毛生成。

Mutations in the consensus ATP-binding sites of XcpR and PilB eliminate extracellular protein secretion and pilus biogenesis in Pseudomonas aeruginosa.

作者信息

Turner L R, Lara J C, Nunn D N, Lory S

机构信息

Department of Microbiology, School of Medicine, University of Washington, Seattle 98195.

出版信息

J Bacteriol. 1993 Aug;175(16):4962-9. doi: 10.1128/jb.175.16.4962-4969.1993.

Abstract

The process of extracellular secretion in Pseudomonas aeruginosa requires specialized machinery which is widely distributed among bacteria that actively secrete proteins to the extracellular medium. One of the components of this machinery is the product of the xcpR gene, which is homologous to pilB, a gene encoding a protein essential for the biogenesis of type IV pili. Both XcpR and PilB are characterized by the presence of a conserved ATP-binding motif (Walker sequence). The codons of highly conserved glycine residues within the Walker sequences of xcpR and pilB were altered to encode a serine, and the effects of these substitutions were examined. Bacteria expressing mutant XcpR or PilB were unable to secrete exotoxin A or assemble pili, respectively. In addition, high-level expression of mutant XcpR in wild-type P. aeruginosa led to a pleiotropic extracellular secretion defect, resulting in the periplasmic accumulation of enzymes that are normally secreted from the cell. These studies show that the putative ATP-binding sites of XcpR and PilB are essential for their functions in protein secretion and assembly of pili, respectively. Moreover, the observed dominant negative phenotype of mutant XcpR suggests that this protein functions as a multimer or, alternatively, interacts with another essential component of the extracellular protein secretion machinery.

摘要

铜绿假单胞菌的细胞外分泌过程需要专门的机制,这种机制广泛存在于能主动向细胞外培养基分泌蛋白质的细菌中。该机制的一个组成部分是xcpR基因的产物,它与pilB同源,pilB是一个编码IV型菌毛生物合成所必需蛋白质的基因。XcpR和PilB都具有一个保守的ATP结合基序(沃克序列)。xcpR和pilB的沃克序列中高度保守的甘氨酸残基密码子被改变以编码丝氨酸,并研究了这些替代的影响。表达突变型XcpR或PilB的细菌分别无法分泌外毒素A或组装菌毛。此外,在野生型铜绿假单胞菌中突变型XcpR的高水平表达导致多效性细胞外分泌缺陷,导致通常从细胞中分泌的酶在周质中积累。这些研究表明,XcpR和PilB的假定ATP结合位点分别对它们在蛋白质分泌和菌毛组装中的功能至关重要。此外,观察到的突变型XcpR的显性负性表型表明,这种蛋白质作为多聚体发挥作用,或者与细胞外蛋白质分泌机制的另一个必需成分相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e3/204960/20976a5c55c9/jbacter00058-0031-a.jpg

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