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大肠杆菌素的成孔结构域与大肠杆菌三聚体孔蛋白结合。

Colicin pore-forming domains bind to Escherichia coli trimeric porins.

作者信息

Dover L G, Evans L J, Fridd S L, Bainbridge G, Raggett E M, Lakey J H

机构信息

School of Biochemistry & Genetics, The Medical School, University of Newcastle upon Tyne, United Kingdom.

出版信息

Biochemistry. 2000 Jul 25;39(29):8632-7. doi: 10.1021/bi000160n.

Abstract

Colicin N kills sensitive Escherichia coli cells by first binding to its trimeric receptor (OmpF) via its receptor binding domain. It then uses OmpF to translocate across the outer membrane and in the process it also needs domains II and III of the protein TolA. Recent studies have demonstrated sodium dodecyl sulfate- (SDS) dependent complex formation between trimeric porins and TolA-II. Here we demonstrate that colicin N forms similar complexes with the same trimeric porins and that this association is unexpectedly solely dependent upon the pore-forming domain (P-domain). No binding was seen with the monomeric porin OmpA. In mixtures of P-domain and TolA with OmpF porin, only binary and no ternary complexes were observed, suggesting that binding of these proteins to the porin is mutually exclusive. Pull-down assays in solution show that porin-P-domain complexes also form in the presence of outer membrane lipopolysaccharide. This indicates that an additional colicin-porin interaction may occur within the outer membrane, one that involves the colicin pore domain rather than the receptor-binding domain. This may help to explain the role of porins and TolA-II in the later stages of colicin translocation.

摘要

大肠杆菌素N通过其受体结合结构域首先与三聚体受体(OmpF)结合来杀死敏感的大肠杆菌细胞。然后它利用OmpF穿过外膜进行转运,在此过程中它还需要蛋白质TolA的结构域II和III。最近的研究表明三聚体孔蛋白与TolA-II之间形成了依赖于十二烷基硫酸钠(SDS)的复合物。在这里,我们证明大肠杆菌素N与相同的三聚体孔蛋白形成类似的复合物,并且这种结合出乎意料地仅依赖于成孔结构域(P结构域)。未观察到与单体孔蛋白OmpA的结合。在P结构域和TolA与OmpF孔蛋白的混合物中,仅观察到二元复合物而未观察到三元复合物,这表明这些蛋白质与孔蛋白的结合是相互排斥的。溶液中的下拉实验表明,在外膜脂多糖存在的情况下也会形成孔蛋白-P结构域复合物。这表明在外膜内可能发生额外的大肠杆菌素-孔蛋白相互作用,这种相互作用涉及大肠杆菌素孔结构域而非受体结合结构域。这可能有助于解释孔蛋白和TolA-II在大肠杆菌素转运后期的作用。

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