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揭示了大肠杆菌 D-木糖结合蛋白的构象变化和配体识别。

Conformational changes and ligand recognition of Escherichia coli D-xylose binding protein revealed.

机构信息

Department of Molecular Biology, Biomedical Center, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

J Mol Biol. 2010 Oct 1;402(4):657-68. doi: 10.1016/j.jmb.2010.07.038. Epub 2010 Aug 1.

Abstract

ATP binding cassette transport systems account for most import of necessary nutrients in bacteria. The periplasmic binding component (or an equivalent membrane-anchored protein) is critical to recognizing cognate ligand and directing it to the appropriate membrane permease. Here we report the X-ray structures of D-xylose binding protein from Escherichia coli in ligand-free open form, ligand-bound open form, and ligand-bound closed form at 2.15 Å, 2.2 Å, and 2.2 Å resolutions, respectively. The ligand-bound open form is the first such structure to be reported at high resolution; the combination of the three different forms from the same protein furthermore gives unprecedented details concerning the conformational changes involved in binding protein function. As is typical of the structural family, the protein has two similar globular domains, which are connected by a three-stranded hinge region. The open liganded structure shows that xylose binds first to the C-terminal domain, with only very small conformational changes resulting. After a 34° closing motion, additional interactions are formed with the N-terminal domain; changes in this domain are larger and serve to make the structure more ordered near the ligand. An analysis of the interactions suggests why xylose is the preferred ligand. Furthermore, a comparison with the most closely related proteins in the structural family shows that the conformational changes are distinct in each type of binding protein, which may have implications for how the individual proteins act in concert with their respective membrane permeases.

摘要

ATP 结合盒转运系统是细菌中大多数必需营养物质的主要转运方式。周质结合成分(或等效的膜锚定蛋白)对于识别同源配体并将其引导至适当的膜透酶至关重要。在这里,我们报告了大肠杆菌 D-木糖结合蛋白在无配体开放形式、配体结合开放形式和配体结合关闭形式下的 X 射线结构,分辨率分别为 2.15Å、2.2Å 和 2.2Å。配体结合的开放形式是第一个以高分辨率报道的此类结构;来自同一蛋白质的三种不同形式的组合,进一步提供了关于结合蛋白功能涉及的构象变化的前所未有的详细信息。与结构家族中的典型情况一样,该蛋白具有两个相似的球形结构域,它们由一个三链铰链区连接。开放配体结构表明木糖首先与 C 末端结构域结合,仅导致非常小的构象变化。在 34°的闭合运动之后,与 N 末端结构域形成额外的相互作用;该结构域的变化更大,有助于使结构在配体附近更加有序。对相互作用的分析表明了为什么木糖是首选配体。此外,与结构家族中最密切相关的蛋白质进行比较表明,每种结合蛋白的构象变化都是独特的,这可能对单个蛋白质如何与其各自的膜透酶协同作用产生影响。

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