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细菌外排转运体 S 组分的结构与机制

Structure and mechanism of the S component of a bacterial ECF transporter.

机构信息

Department of Molecular Biology, Lewis Thomas Laboratory, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Nature. 2010 Dec 2;468(7324):717-20. doi: 10.1038/nature09488. Epub 2010 Oct 24.

Abstract

The energy-coupling factor (ECF) transporters, responsible for vitamin uptake in prokaryotes, are a unique family of membrane transporters. Each ECF transporter contains a membrane-embedded, substrate-binding protein (known as the S component), an energy-coupling module that comprises two ATP-binding proteins (known as the A and A' components) and a transmembrane protein (known as the T component). The structure and transport mechanism of the ECF family remain unknown. Here we report the crystal structure of RibU, the S component of the ECF-type riboflavin transporter from Staphylococcus aureus at 3.6-Å resolution. RibU contains six transmembrane segments, adopts a previously unreported transporter fold and contains a riboflavin molecule bound to the L1 loop and the periplasmic portion of transmembrane segments 4-6. Structural analysis reveals the essential ligand-binding residues, identifies the putative transport path and, with sequence alignment, uncovers conserved structural features and suggests potential mechanisms of action among the ECF transporters.

摘要

能量偶联因子(ECF)转运蛋白负责原核生物中维生素的摄取,是一类独特的膜转运蛋白家族。每个 ECF 转运蛋白都包含一个膜嵌入的、底物结合蛋白(称为 S 成分)、一个由两个 ATP 结合蛋白(称为 A 和 A' 成分)组成的能量偶联模块,以及一个跨膜蛋白(称为 T 成分)。ECF 家族的结构和转运机制仍不清楚。在这里,我们报告了来自金黄色葡萄球菌的 ECF 型核黄素转运蛋白的 S 成分 RibU 的晶体结构,分辨率为 3.6 Å。RibU 包含六个跨膜片段,采用以前未报道的转运蛋白折叠,并且包含结合在 L1 环和跨膜片段 4-6 的周质部分的核黄素分子。结构分析揭示了必需的配体结合残基,确定了推定的运输途径,并通过序列比对揭示了 ECF 转运蛋白之间的保守结构特征和潜在的作用机制。

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