钠通道
虎耳草毒素
河豚毒素
门控
钠
生物物理学
毒素
化学
海洋毒素
神经毒素
生物
生物化学
有机化学
作者
Huaizong Shen,Zhangqiang Li,Yan Jiang,Xiaojing Pan,Jianping Wu,Ben Cristofori‐Armstrong,Jennifer J. Smith,Yanni K.‐Y. Chin,Jianlin Lei,Qiang Zhou,Glenn F. King,Nieng Yan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2018-07-26
卷期号:362 (6412)
被引量:270
标识
DOI:10.1126/science.aau2596
摘要
Structures of voltage-gated sodium channels In “excitable” cells, like neurons and muscle cells, a difference in electrical potential is used to transmit signals across the cell membrane. This difference is regulated by opening or closing ion channels in the cell membrane. For example, mutations in human voltage-gated sodium (Na v ) channels are associated with disorders such as chronic pain, epilepsy, and cardiac arrhythmia. Pan et al. report the high-resolution structure of a human Na v channel, and Shen et al. report the structures of an insect Na v channel bound to the toxins that cause pufferfish and shellfish poisoning in humans. Together, the structures give insight into the molecular basis of sodium ion permeation and provide a path toward structure-based drug discovery. Science , this issue p. eaau2486 , p. eaau2596
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