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霍乱弧菌II型分泌突变体中外膜完整性受损。

Compromised outer membrane integrity in Vibrio cholerae Type II secretion mutants.

作者信息

Sikora Aleksandra E, Lybarger Suzanne R, Sandkvist Maria

机构信息

University of Michigan Medical School, Department of Microbiology and Immunology, 1150 West Medical Center Drive, 6741 Medical Science Building II, Ann Arbor, MI 48109-0620, USA.

出版信息

J Bacteriol. 2007 Dec;189(23):8484-95. doi: 10.1128/JB.00583-07. Epub 2007 Sep 21.

Abstract

The type II secretion (T2S) system of Vibrio cholerae is a multiprotein complex that spans the cell envelope and secretes proteins important for pathogenesis as well as survival in different environments. Here we report that, in addition to the loss of extracellular secretion, removal or inhibition of expression of the T2S genes, epsC-N, results in growth defects and a broad range of alterations in the outer membrane that interfere with its barrier function. Specifically, the sensitivity to membrane-perturbing agents such as bile salts and the antimicrobial peptide polymyxin B is increased, and periplasmic constituents leak out into the culture medium. As a consequence, the sigma(E) stress response is induced. Furthermore, due to the defects caused by inactivation of the T2S system, the Deltaeps deletion mutant of V. cholerae strain N16961 is incapable of surviving the passage through the infant mouse gastrointestinal tract. The growth defect and leaky outer membrane phenotypes are suppressed when the culture medium is supplemented with 5% glucose or sucrose, although the eps mutants remain sensitive to membrane-damaging agents. This suggests that the sugars do not restore the integrity of the outer membrane in the eps mutant strains per se but may provide osmoprotective functions.

摘要

霍乱弧菌的II型分泌(T2S)系统是一种跨越细胞包膜的多蛋白复合物,可分泌对致病以及在不同环境中生存至关重要的蛋白质。在此我们报告,除了细胞外分泌丧失外,T2S基因epsC-N的缺失或表达受抑制会导致生长缺陷以及外膜出现广泛改变,从而干扰其屏障功能。具体而言,对胆盐和抗菌肽多粘菌素B等膜扰动剂的敏感性增加,周质成分泄漏到培养基中。结果,诱导了σ(E)应激反应。此外,由于T2S系统失活导致的缺陷,霍乱弧菌N16961菌株的Δeps缺失突变体无法在通过幼鼠胃肠道后存活。当培养基中添加5%葡萄糖或蔗糖时,生长缺陷和外膜渗漏表型受到抑制,尽管eps突变体对膜损伤剂仍敏感。这表明糖类本身并不能恢复eps突变体菌株中外膜的完整性,但可能提供渗透保护功能。

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