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结构证据表明,大肠杆菌周质中 TolA 蛋白的一个新结合位点结合了 colicin A 蛋白。

Structural evidence that colicin A protein binds to a novel binding site of TolA protein in Escherichia coli periplasm.

机构信息

School of Molecular Medical Sciences, Centre for Biomolecular Sciences, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.

出版信息

J Biol Chem. 2012 Jun 1;287(23):19048-57. doi: 10.1074/jbc.M112.342246. Epub 2012 Apr 9.

Abstract

The Tol assembly of proteins is an interacting network of proteins located in the Escherichia coli cell envelope that transduces energy and contributes to cell integrity. TolA is central to this network linking the inner and outer membranes by interactions with TolQ, TolR, TolB, and Pal. Group A colicins, such as ColA, parasitize the Tol network through interactions with TolA and/or TolB to facilitate translocation through the cell envelope to reach their cytotoxic site of action. We have determined the first structure of the C-terminal domain of TolA (TolAIII) bound to an N-terminal ColA polypeptide (TA(53-107)). The interface region of the TA(53-107)-TolAIII complex consists of polar contacts linking residues Arg-92 to Arg-96 of ColA with residues Leu-375-Pro-380 of TolA, which constitutes a β-strand addition commonly seen in more promiscuous protein-protein contacts. The interface region also includes three cation-π interactions (Tyr-58-Lys-368, Tyr-90-Lys-379, Phe-94-Lys-396), which have not been observed in any other colicin-Tol protein complex. Mutagenesis of the interface residues of ColA or TolA revealed that the effect on the interaction was cumulative; single mutations of either partner had no effect on ColA activity, whereas mutations of three or more residues significantly reduced ColA activity. Mutagenesis of the aromatic ring component of the cation-π interacting residues showed Tyr-58 of ColA to be essential for the stability of complex formation. TA(53-107) binds on the opposite side of TolAIII to that used by g3p, ColN, or TolB, illustrating the flexible nature of TolA as a periplasmic hub protein.

摘要

Tol 蛋白组装是一个位于大肠杆菌细胞包膜中的蛋白质相互作用网络,它传递能量并有助于细胞完整性。TolA 是这个网络的核心,通过与 TolQ、TolR、TolB 和 Pal 的相互作用连接内膜和外膜。A 组大肠菌素,如 ColA,通过与 TolA 和/或 TolB 的相互作用寄生在 Tol 网络上,以促进穿过细胞包膜的易位,到达其细胞毒性作用部位。我们已经确定了 TolA(TolAIII)的 C 末端结构域与 N 末端 ColA 多肽(TA(53-107))结合的第一个结构。TA(53-107)-TolAIII 复合物的界面区域由极性接触组成,将 ColA 的残基 Arg-92 到 Arg-96 与 TolA 的残基 Leu-375-Pro-380 连接起来,这构成了在更具混杂性的蛋白质-蛋白质接触中常见的β-链添加。界面区域还包括三个阳离子-π 相互作用(Tyr-58-Lys-368、Tyr-90-Lys-379、Phe-94-Lys-396),在任何其他大肠菌素-Tol 蛋白复合物中都没有观察到。ColA 或 TolA 界面残基的突变显示,对相互作用的影响是累积的;单一突变任一方对 ColA 活性都没有影响,而三个或更多残基的突变则显著降低了 ColA 活性。阳离子-π 相互作用残基的芳香环成分的突变显示,ColA 的 Tyr-58 对于复合物形成的稳定性至关重要。TA(53-107)结合在 TolAIII 的另一侧,而不是 g3p、ColN 或 TolB 所使用的位置,这说明了 TolA 作为周质中心蛋白的灵活性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a662/3365938/97cff3a21389/zbc0241210420001.jpg

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