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Crystal structures of a ZIP zinc transporter reveal a binuclear metal center in the transport pathway

机译:ZIP锌转运蛋白的晶体结构揭示了转运途径中的双核金属中心

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Zrt/Irt-like proteins (ZIPs) play fundamental roles in metal metabolism/homeostasis and are broadly involved in numerous physiological and pathological processes. The lack of high-resolution structure of the ZIPs hinders understanding of the metal transport mechanism. We report two crystal structures of a prokaryotic ZIP in lipidic cubic phase with bound metal substrates (Cd2+ at 2.7 ? and Zn2+ at 2.4 ?). The structures revealed a novel 3+2+3TM architecture and an inward-open conformation occluded at the extracellular side. Two metal ions were trapped halfway through the membrane, unexpectedly forming a binuclear metal center. The Zn2+-substituted structure suggested asymmetric functions of the two metal-binding sites and also revealed a route for zinc release. Mapping of disease-causing mutations, structure-guided mutagenesis, and cell-based zinc transport assay demonstrated the crucial role of the binuclear metal center for human ZIP4. A metal transport mechanism for the ZIP from Bordetella bronchiseptica was proposed, which is likely applicable to other ZIPs.
机译:Zrt / Irt样蛋白(ZIP)在金属代谢/体内平衡中起着基本作用,并广泛参与许多生理和病理过程。 ZIP缺乏高分辨率结构阻碍了对金属传输机制的理解。我们报告了脂质立方相中结合有金属底物的两个原核ZIP的晶体结构(Cd 2 + 在2.7?和Zn 2 + 在2.4?)。结构揭示了一种新颖的3 + 2 + 3TM结构,并在细胞外侧封闭了向内开放的构象。两种金属离子被截留在膜的中途,意外地形成了双核金属中心。 Zn 2 + 取代的结构表明两个金属结合位点的功能不对称,并且揭示了锌释放的途径。致病突变,结构指导的诱变和基于细胞的锌转运分析的图谱表明,双核金属中心对于人类ZIP4至关重要。提出了一种用于支气管博德特氏菌的ZIP的金属运输机制,该机制可能适用于其他ZIP。

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