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Structures of multidrug and toxic compound extrusion transporters and their mechanistic implications

机译:多药和有毒化合物挤出转运蛋白的结构及其机理意义

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Multidrug resistance poses grand challenges to the effective treatment of infectious diseases and cancers. Integral membrane proteins from the multidrug and toxic compound extrusion (MATE) family contribute to multidrug resistance by exporting a wide variety of therapeutic drugs across cell membranes. MATE proteins are conserved from bacteria to humans and can be categorized into the NorM, DinF and eukaryotic subfamilies. MATE transporters hold great appeal as potential therapeutic targets for curbing multidrug resistance, yet their transport mechanism remains elusive. During the past 5?years, X-ray structures of 4 NorM and DinF transporters have been reported and guided biochemical studies to reveal how MATE transporters extrude different drugs. Such advances, although substantial, have yet to be discussed collectively. Herein I review these structures and the unprecedented mechanistic insights that have been garnered from those structure-inspired studies, as well as lay out the outstanding questions that present exciting opportunities for future work.
机译:多药耐药性对有效治疗传染病和癌症提出了巨大挑战。来自多药和有毒化合物挤出(MATE)系列的整合膜蛋白通过跨细胞膜输出多种治疗药物,从而促进了多药耐药性。 MATE蛋白从细菌到人类都是保守的,可以分为NorM,DinF和真核亚家族。 MATE转运蛋白作为遏制多药耐药性的潜在治疗靶标具有极大的吸引力,但其转运机制仍然难以捉摸。在过去的5年中,已经报道了4种NorM和DinF转运蛋白的X射线结构,并指导了生化研究以揭示MATE转运蛋白如何挤出不同的药物。这些进步虽然是实质性的,但尚未集体讨论。在这里,我将回顾这些结构以及从这些结构启发性研究中获得的前所未有的机械洞察力,并提出一些突出的问题,这些问题为将来的工作提供了令人兴奋的机会。

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    《Channels 》 |2016年第2期| 共13页
  • 作者

    Min Lu;

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  • 中图分类 生理学 ;
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