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质子偶联多药外排转运蛋白的结构洞察。

Structural insights into H+-coupled multidrug extrusion by a MATE transporter.

机构信息

Department of Biochemistry and Molecular Biology, Rosalind Franklin University of Medicine and Science, North Chicago, Illinois, USA.

出版信息

Nat Struct Mol Biol. 2013 Nov;20(11):1310-7. doi: 10.1038/nsmb.2687. Epub 2013 Oct 20.

Abstract

Multidrug and toxic compound extrusion (MATE) transporters contribute to multidrug resistance by coupling the efflux of drugs to the influx of Na(+) or H(+). Known structures of Na(+)-coupled, extracellular-facing MATE transporters from the NorM subfamily revealed 12 membrane-spanning segments related by a quasi-two-fold rotational symmetry and a multidrug-binding cavity situated near the membrane surface. Here we report the crystal structure of an H(+)-coupled MATE transporter from Bacillus halodurans and the DinF subfamily at 3.2-Å resolution, unveiling a surprisingly asymmetric arrangement of 12 transmembrane helices. We also identified a membrane-embedded substrate-binding chamber by combining crystallographic and biochemical analyses. Our studies further suggested a direct competition between H(+) and substrate during DinF-mediated transport and implied how a MATE transporter alternates between its extracellular- and intracellular-facing conformations to propel multidrug extrusion. Collectively, our results demonstrated heretofore-unrecognized mechanistic diversity among MATE transporters.

摘要

多药和毒素外排(MATE)转运蛋白通过将药物外排与 Na(+) 或 H(+) 的内流偶联来导致多药耐药性。来自 NorM 亚家族的 Na(+)-偶联、细胞外面向 MATE 转运蛋白的已知结构揭示了由准二倍旋转对称相关的 12 个跨膜片段和位于膜表面附近的多药物结合腔。在这里,我们报告了来自 Bacillus halodurans 和 DinF 亚家族的 H(+)-偶联 MATE 转运蛋白的晶体结构,分辨率为 3.2-Å,揭示了 12 个跨膜螺旋的惊人不对称排列。我们还通过结合晶体学和生化分析鉴定了一个膜嵌入式底物结合腔。我们的研究进一步表明,在 DinF 介导的转运过程中,H(+) 和底物之间存在直接竞争,并暗示了 MATE 转运蛋白如何在其细胞外和细胞内构象之间交替,以推动多药外排。总的来说,我们的研究结果表明,MATE 转运蛋白之间存在以前未被认识到的机制多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a7f/3825517/d5c233388a91/nihms519651f1.jpg

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