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The Structure of the Polycystic Kidney Disease Channel PKD2 in Lipid Nanodiscs

机译:脂质纳米圆盘中多囊肾疾病通道PKD2的结构。

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The Polycystic Kidney Disease 2 (Pkd2) gene is mutated in autosomal dominant polycystic kidney disease (ADPKD), one of the most common human monogenic disorders. Here, we present the cryo-EM structure of PKD2 in lipid bilayers at 3.0 angstrom resolution, which establishes PKD2 as a homotetrameric ion channel and provides insight into potential mechanisms for its activation. The PKD2 voltage-sensor domain retains two of four gating charges commonly found in those of voltage-gated ion channels. The PKD2 ion permeation pathway is constricted at the selectivity filter and near the cytoplasmic end of S6, suggesting that two gates regulate ion conduction. The extracellular domain of PKD2, a hotspot for ADPKD pathogenic mutations, contributes to channel assembly and strategically interacts with the transmembrane core, likely serving as a physical substrate for extracellular stimuli to allosterically gate the channel. Finally, our structure establishes the molecular basis for the majority of pathogenic mutations in Pkd2-related ADPKD.
机译:多囊肾疾病2(Pkd2)基因在常染色体显性多囊肾疾病(ADPKD)中发生突变,这是人类最常见的单基因疾病之一。在这里,我们介绍了脂双层中的PKD2的冷冻电磁结构,分辨率为3.0埃,该结构将PKD2建立为同四聚体离子通道,并提供了对其激活的潜在机制的认识。 PKD2电压传感器域保留了电压门控离子通道中常见的四个门控电荷中的两个。 PKD2离子的渗透途径被限制在选择性过滤器和S6的细胞质末端附近,表明两个门调节了离子的传导。 PKD2的胞外域是ADPKD致病突变的热点,有助于通道组装并与跨膜核心进行战略性相互作用,可能充当胞外刺激的物理底物,以变构方式控制通道。最后,我们的结构为Pkd2相关ADPKD中的大多数致病性突变建立了分子基础。

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