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μ-芋螺毒素 KIIIA 阻塞人 Na 通道 Na1.2 的分子基础。

Molecular basis for pore blockade of human Na channel Na1.2 by the μ-conotoxin KIIIA.

机构信息

State Key Laboratory of Membrane Biology, School of Life Sciences and School of Medicine, Tsinghua University, Beijing 100084, China.

Beijing Advanced Innovation Center for Structural Biology, School of Life Sciences and School of Medicine, Tsinghua University, Beijing 100084, China.

出版信息

Science. 2019 Mar 22;363(6433):1309-1313. doi: 10.1126/science.aaw2999. Epub 2019 Feb 14.

Abstract

The voltage-gated sodium channel Na1.2 is responsible for the initiation and propagation of action potentials in the central nervous system. We report the cryo-electron microscopy structure of human Na1.2 bound to a peptidic pore blocker, the μ-conotoxin KIIIA, in the presence of an auxiliary subunit, β2, to an overall resolution of 3.0 angstroms. The immunoglobulin domain of β2 interacts with the shoulder of the pore domain through a disulfide bond. The 16-residue KIIIA interacts with the extracellular segments in repeats I to III, placing Lys at the entrance to the selectivity filter. Many interacting residues are specific to Na1.2, revealing a molecular basis for KIIIA specificity. The structure establishes a framework for the rational design of subtype-specific blockers for Na channels.

摘要

电压门控钠离子通道 Na1.2 负责中枢神经系统动作电位的启动和传播。我们报告了冷冻电镜结构的人类 Na1.2 结合到一个肽孔阻滞剂,μ-conotoxin KIIIA,在辅助亚基β2 的存在下,整体分辨率为 3.0 埃。β2 的免疫球蛋白结构域通过二硫键与孔结构域的肩部相互作用。16 残基的 KIIIA 与重复 I 到 III 的细胞外片段相互作用,将赖氨酸置于选择性过滤器的入口处。许多相互作用的残基是 Na1.2 特有的,揭示了 KIIIA 特异性的分子基础。该结构为 Na 通道的亚型特异性阻滞剂的合理设计建立了框架。

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