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大麻二酚与电压门控钠离子通道的相互作用。

Cannabidiol interactions with voltage-gated sodium channels.

机构信息

Institute of Structural and Molecular Biology, Birkbeck College, University of London, London, United Kingdom.

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, Canada.

出版信息

Elife. 2020 Oct 22;9:e58593. doi: 10.7554/eLife.58593.

Abstract

Voltage-gated sodium channels are targets for a range of pharmaceutical drugs developed for the treatment of neurological diseases. Cannabidiol (CBD), the non-psychoactive compound isolated from cannabis plants, was recently approved for treatment of two types of epilepsy associated with sodium channel mutations. This study used high-resolution X-ray crystallography to demonstrate the detailed nature of the interactions between CBD and the NavMs voltage-gated sodium channel, and electrophysiology to show the functional effects of binding CBD to these channels. CBD binds at a novel site at the interface of the fenestrations and the central hydrophobic cavity of the channel. Binding at this site blocks the transmembrane-spanning sodium ion translocation pathway, providing a molecular mechanism for channel inhibition. Modelling studies suggest why the closely-related psychoactive compound tetrahydrocannabinol may not have the same effects on these channels. Finally, comparisons are made with the TRPV2 channel, also recently proposed as a target site for CBD. In summary, this study provides novel insight into a possible mechanism for CBD interactions with sodium channels.

摘要

电压门控钠离子通道是一系列用于治疗神经疾病的药物靶点。大麻素(CBD)是从大麻植物中分离出来的非精神活性化合物,最近被批准用于治疗与钠离子通道突变相关的两种类型的癫痫。本研究使用高分辨率 X 射线晶体学来证明 CBD 与 NavMs 电压门控钠离子通道之间相互作用的详细性质,并通过电生理学显示 CBD 与这些通道结合的功能影响。CBD 结合在通道的窗孔和中央疏水区界面的一个新位点上。该位点的结合阻断了跨膜钠离子转运途径,为通道抑制提供了分子机制。建模研究表明,为什么密切相关的精神活性化合物四氢大麻酚可能对这些通道没有相同的作用。最后,与 TRPV2 通道进行了比较,该通道最近也被提议为 CBD 的靶标位点。总之,本研究为 CBD 与钠离子通道相互作用的可能机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9de/7641581/670ce8ab1021/elife-58593-fig1.jpg

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