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Structural basis for heteromeric assembly and subthreshold activation of human M-channel

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作者

    Yifei Wang,  Hui Yang,  Yannan Qu,  Junnan Li,  Xiao Li,  Wenxin Hou,  Kun Wu,  Guanglei Xie,  Xi Wang,  Yangliang Ye,  Huaiyu Yang,  Huaizong Shen
分类
关键词
M-Channel; Heteromeric channel; Structural biology

摘要

The M-channel, a heterotetrameric voltage-gated potassium channel formed by KCNQ2 and KCNQ3 subunits, critically regulates neuronal excitability, with dysfunction linked to epilepsy and developmental encephalopathies. Despite its physiological importance, structural mechanisms governing its unique heteromeric assembly and subthreshold gating have remained unresolved. We present cryo-EM structures of human M-channels revealing unprecedented stoichiometric plasticity, with all possible KCNQ2:KCNQ3 configurations (1:3 to 3:1) observed. Electrophysiology of engineered concatemers shows these assemblies recapitulate native function. Structural analyses uncover that KCNQ3’s voltage-sensing domain (VSD) adopts a more depolarized conformation than KCNQ2, explaining its signature subthreshold activation. Leveraging these insights, we developed CLM142, a structure-guided activator with 10-fold greater potency and specificity than withdrawn retigabine. CLM142 enabled open-state structure determination, revealing how PIP2 binding couples VSD movement to pore opening. Our work provides an atomic-resolution framework for understanding M-channel’s unique assembly, physiology, disease mechanisms, and targeted therapeutic design.

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DOI:

Submission ID:

58

下载次数

已发布

2025-12-16

如何引用

Wang, Y., Yang, H., Qu, Y., Li, J., Li, X., Hou, W., Wu, K., Xie, G., Wang, X., Ye, Y., Yang, H., & Shen, H. (2025). Structural basis for heteromeric assembly and subthreshold activation of human M-channel. 浪淘沙预印本平台. https://doi.org/10.65215/r3rdbv84

利益冲突声明

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