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通过基因抑制鉴定大肠杆菌中对TolB-Pal相互作用重要的TolB残基。

Identification by genetic suppression of Escherichia coli TolB residues important for TolB-Pal interaction.

作者信息

Ray M C, Germon P, Vianney A, Portalier R, Lazzaroni J C

机构信息

Unité de Microbiologie et Génétique, UMR 5577, CNRS-INSA-Université Lyon I, F-69622 Villeurbanne, France.

出版信息

J Bacteriol. 2000 Feb;182(3):821-4. doi: 10.1128/JB.182.3.821-824.2000.

Abstract

The Tol-Pal system of Escherichia coli is involved in maintaining outer membrane stability. Mutations in tolQ, tolR, tolA, tolB, or pal genes result in sensitivity to bile salts and the leakage of periplasmic proteins. Moreover, some of the tol genes are necessary for the entry of group A colicins and the DNA of filamentous bacteriophages. TolQ, TolR, and TolA are located in the cytoplasmic membrane where they interact with each other via their transmembrane domains. TolB and Pal form a periplasmic complex near the outer membrane. We used suppressor genetics to identify the regions important for the interaction between TolB and Pal. Intragenic suppressor mutations were characterized in a domain of Pal that was shown to be involved in interactions with TolB and peptidoglycan. Extragenic suppressor mutations were located in tolB gene. The C-terminal region of TolB predicted to adopt a beta-propeller structure was shown to be responsible for the interaction of the protein with Pal. Unexpectedly, none of the suppressor mutations was able to restore a correct association between Pal and peptidoglycan, suggesting that interactions between Pal and other components such as TolB may also be important for outer membrane stability.

摘要

大肠杆菌的Tol-Pal系统参与维持外膜稳定性。tolQ、tolR、tolA、tolB或pal基因的突变会导致对胆盐敏感以及周质蛋白泄漏。此外,一些tol基因对于A群大肠杆菌素的进入和丝状噬菌体的DNA进入是必需的。TolQ、TolR和TolA位于细胞质膜中,它们通过跨膜结构域相互作用。TolB和Pal在外膜附近形成周质复合物。我们利用抑制子遗传学来确定对TolB和Pal之间相互作用重要的区域。在Pal的一个结构域中鉴定出了基因内抑制子突变,该结构域被证明参与与TolB和肽聚糖的相互作用。基因外抑制子突变位于tolB基因中。预测TolB的C末端区域会形成β-螺旋桨结构,该区域被证明负责该蛋白与Pal的相互作用。出乎意料的是,没有一个抑制子突变能够恢复Pal与肽聚糖之间的正确结合,这表明Pal与其他成分(如TolB)之间的相互作用对外膜稳定性可能也很重要。

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