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乳球菌多药耐药蛋白介导的细菌素分泌与免疫新机制。

Novel mechanism of bacteriocin secretion and immunity carried out by lactococcal multidrug resistance proteins.

作者信息

Gajic Olivera, Buist Girbe, Kojic Milan, Topisirovic Ljubisa, Kuipers Oscar P, Kok Jan

机构信息

Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Kerklaan 30, 9751 NN Haren, The Netherlands.

出版信息

J Biol Chem. 2003 Sep 5;278(36):34291-8. doi: 10.1074/jbc.M211100200. Epub 2003 Jun 11.

DOI:10.1074/jbc.M211100200
PMID:12801935
Abstract

A natural isolate of Lactococcus lactis was shown to produce two narrow spectrum class II bacteriocins, designated LsbA and LsbB. The cognate genes are located on a 5.6-kb plasmid within a gene cluster specifying LmrB, an ATP-binding cassette-type multidrug resistance transporter protein. LsbA is a hydrophobic peptide that is initially synthesized with an N-terminal extension. The housekeeping surface proteinase HtrA was shown to be responsible for the cleavage of precursor peptide to yield the active bacteriocin. LsbB is a relatively hydrophilic protein synthesized without an N-terminal leader sequence or signal peptide. The secretion of both polypeptides was shown to be mediated by LmrB. An L. lactis strain lacking plasmid-encoded LmrB and the chromosomally encoded LmrA is unable to secrete either of the two bacteriocins. Complementation of the strain with an active LmrB protein resulted in restored export of the two polypeptides across the cytoplasmic membrane. When expressed in an L. lactis strain that is sensitive to LsbA and LsbB, LmrB was shown to confer resistance toward both bacteriocins. It does so, most likely, by removing the two polypeptides from the cytoplasmic membrane. This is the first report in which a multidrug transporter protein is shown to be involved in both secretion and immunity of antimicrobial peptides.

摘要

一株乳酸乳球菌天然分离株被证明可产生两种窄谱II类细菌素,分别命名为LsbA和LsbB。其同源基因位于一个5.6 kb质粒上的基因簇内,该基因簇还编码LmrB,一种ATP结合盒式多药耐药转运蛋白。LsbA是一种疏水肽,最初合成时带有N端延伸。已证明管家表面蛋白酶HtrA负责切割前体肽以产生活性细菌素。LsbB是一种相对亲水的蛋白质,合成时没有N端前导序列或信号肽。两种多肽的分泌均由LmrB介导。一株缺乏质粒编码的LmrB和染色体编码的LmrA的乳酸乳球菌菌株无法分泌这两种细菌素中的任何一种。用活性LmrB蛋白对该菌株进行互补,导致这两种多肽恢复通过细胞质膜的输出。当在对LsbA和LsbB敏感的乳酸乳球菌菌株中表达时,LmrB被证明赋予对这两种细菌素的抗性。最有可能的是,它通过从细胞质膜上去除这两种多肽来实现这一点。这是首次报道一种多药转运蛋白参与抗菌肽的分泌和免疫。

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