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The Sensorless Pore Module of Voltage-gated K+ Channel Family 7 Embodies the Target Site for the Anticonvulsant Retigabine

机译:电压门控K +通道家族7的无传感器毛孔模块为抗惊厥性瑞替加滨的目标部位提供了支持

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摘要

KCNQ (voltage-gated K+ channel family 7 (Kv7)) channels control cellular excitability and underlie the K+ current sensitive to muscarinic receptor signaling (the M current) in sympathetic neurons. Here we show that the novel anti-epileptic drug retigabine (RTG) modulates channel function of pore-only modules (PMs) of the human Kv7.2 and Kv7.3 homomeric channels and of Kv7.2/3 heteromeric channels by prolonging the residence time in the open state. In addition, the Kv7 channel PMs are shown to recapitulate the single-channel permeation and pharmacological specificity characteristics of the corresponding full-length proteins in their native cellular context. A mutation (W265L) in the reconstituted Kv7.3 PM renders the channel insensitive to RTG and favors the conductive conformation of the PM, in agreement to what is observed when the Kv7.3 mutant is heterologously expressed. On the basis of the new findings and homology models of the closed and open conformations of the Kv7.3 PM, we propose a structural mechanism for the gating of the Kv7.3 PM and for the site of action of RTG as a Kv7.2/Kv7.3 K+ current activator. The results validate the modular design of human Kv channels and highlight the PM as a high-fidelity target for drug screening of Kv channels.
机译:KCNQ(电压门控K + 通道家族7(Kv7))通道控制细胞的兴奋性,并在交感神经中对毒蕈碱受体信号敏感的K + 电流(M电流)奠定基础神经元。在这里,我们显示了新型抗癫痫药瑞替加滨(RTG)通过延长停留时间来调节人Kv7.2和Kv7.3同系物通道以及Kv7.2 / 3异聚体通道的仅孔模块(PMs)的通道功能时间处于打开状态。此外,Kv7通道PMs在其天然细胞环境中可概括相应全长蛋白的单通道渗透和药理学特异性。重组的Kv7.3 PM中的突变(W265L)使通道对RTG不敏感,并且有利于PM的导电构象,这与Kv7.3突变体异源表达时观察到的一致。根据Kv7.3 PM封闭和开放构象的新发现和同源性模型,我们提出了Kv7.3 PM选通和RTG作为Kv7.2作用部位的结构机制/Kv7.3 K + 当前激活器。结果验证了人类Kv通道的模块化设计,并突出了PM作为Kv通道药物筛选的高保真目标。

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