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Structural basis for xenobiotic extrusion by eukaryotic MATE transporter

机译:真核MATE转运蛋白挤压外源生物的结构基础。

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Mulitidrug and toxic compound extrusion (MATE) family transporters export xenobiotics to maintain cellular homeostasis. The human MATE transporters mediate the excretion of xenobiotics and cationic clinical drugs, whereas some plant MATE transporters are responsible for aluminum tolerance and secondary metabolite transport. Here we report the crystal structure of the eukaryotic MATE transporter from Arabidopsis thaliana, at 2.6?? resolution. The structure reveals that its carboxy-terminal lobe (C-lobe) contains an extensive hydrogen-bonding network with well-conserved acidic residues, and their importance is demonstrated by the structure-based mutational analysis. The structural and functional analyses suggest that the transport mechanism involves the structural change of transmembrane helix 7, induced by the formation of a hydrogen-bonding network upon the protonation of the conserved acidic residue in the C-lobe. Our findings provide insights into the transport mechanism of eukaryotic MATE transporters, which is important for the improvement of the pharmacokinetics of the clinical drugs.
机译:多种药物和有毒化合物挤出(MATE)家庭转运蛋白可输出异质生物来维持细胞体内稳态。人类MATE转运蛋白介导异种生物和阳离子临床药物的排泄,而某些植物MATE转运蛋白负责铝耐受性和次级代谢产物的转运。在这里,我们报道了拟南芥(Arabidopsis thaliana)的真核生物MATE转运蛋白的晶体结构,为2.6?。解析度。该结构表明,其羧基末端叶(C-叶)包含广泛的氢键网络,带有保守的酸性残基,其重要性通过基于结构的突变分析得到证明。结构和功能分析表明,转运机制涉及跨膜螺旋7的结构变化,该结构变化是由C瓣中的保守酸性残基质子化后形成的氢键网络引起的。我们的发现为真核MATE转运蛋白的转运机制提供了见识,这对于改善临床药物的药代动力学很重要。

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