结核分枝杆菌关键MmpL膜蛋白质周结构域的结构和相互作用。

Chemistry & biology Pub Date : 2015-08-20 Epub Date: 2015-08-13 DOI:10.1016/j.chembiol.2015.07.013
Nicholas Chim, Rodrigo Torres, Yuqi Liu, Joe Capri, Gaëlle Batot, Julian P Whitelegge, Celia W Goulding
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引用次数: 40

摘要

结核分枝杆菌大膜蛋白(MmpL)蛋白在底物跨内膜运输中起重要作用。在这里,我们发现MmpL蛋白被分为两个系统发育簇,其中MmpL簇II包含三个可溶性结构域(D1, D2和D3),并有两个全长成员MmpL3和MmpL11。值得注意的是,MmpL3是目前最有药性的结核分枝杆菌靶点。我们已经解决了2.4-Å MmpL11-D2晶体结构,揭示了与RND(多药)转运蛋白的质周转运亚域的结构同源性。由此预测的簇II MmpL膜拓扑结构中D1和D2存在于外周质中,并可能相互作用。交联和生物层干涉实验证实,簇II D1和D2结合亲和力较弱,并引导D1-D2异二聚体模型组装。预测的全长MmpL3和MmpL11结构模型揭示了关键的底物结合和转运残基,并可能作为模板为硅抗结核药物的开发奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Structure and Interactions of Periplasmic Domains of Crucial MmpL Membrane Proteins from Mycobacterium tuberculosis.

Mycobacterium tuberculosis mycobacterial membrane protein large (MmpL) proteins are important in substrate transport across the inner membrane. Here, we show that MmpL proteins are classified into two phylogenetic clusters, where MmpL cluster II contains three soluble domains (D1, D2, and D3) and has two full-length members, MmpL3 and MmpL11. Significantly, MmpL3 is currently the most druggable M. tuberculosis target. We have solved the 2.4-Å MmpL11-D2 crystal structure, revealing structural homology to periplasmic porter subdomains of RND (multidrug) transporters. The resulting predicted cluster II MmpL membrane topology has D1 and D2 residing, and possibly interacting, within the periplasm. Crosslinking and biolayer interferometry experiments confirm that cluster II D1 and D2 bind with weak affinities, and guided D1-D2 heterodimeric model assemblies. The predicted full-length MmpL3 and MmpL11 structural models reveal key substrate binding and transport residues, and may serve as templates to set the stage for in silico anti-tuberculosis drug development.

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来源期刊
Chemistry & biology
Chemistry & biology 生物-生化与分子生物学
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审稿时长
4-8 weeks
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