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钠通道上蟾毒素受体的状态依赖性访问。

State-dependent access to the batrachotoxin receptor on the sodium channel.

作者信息

De Leon Lyn, Ragsdale David S

机构信息

Department of Neurology and Neurosurgery, Montreal Neurological Institute, McGill University, Montreal, Quebec H3A 2B4, Canada.

出版信息

Neuroreport. 2003 Jul 18;14(10):1353-6. doi: 10.1097/01.wnr.0000077552.91466.08.

Abstract

Batrachotoxin causes sustained opening of voltage-gated sodium channels. Toxin binds irreversibly to wild type channels; however, it dissociates rapidly from channels with mutation F1710C in transmembrane segment IVS6. This dissociation requires channel activation, suggesting that the activation gate guards the toxin-binding site. Here we show that activity-dependent toxin dissociation was not affected by external sodium, arguing against a binding site within the pore, and demonstrate that dissociation occurred only during the first few milliseconds after membrane depolarization, as if the toxin leaves its binding site during closed states that precede the final open state in the activation pathway. Toxin interaction with preopen states may facilitate subsequent channel opening, thus accounting for the batrachotoxin-induced negative shift in channel activation.

摘要

箭毒蛙毒素可导致电压门控钠通道持续开放。该毒素与野生型通道不可逆结合;然而,它能迅速从跨膜片段IVS6中发生F1710C突变的通道上解离。这种解离需要通道激活,这表明激活门控保护着毒素结合位点。我们在此表明,依赖活性的毒素解离不受细胞外钠离子影响,这与孔道内存在结合位点的观点相悖,并且证明解离仅发生在膜去极化后的最初几毫秒内,就好像毒素在激活途径中最终开放状态之前的关闭状态期间离开其结合位点一样。毒素与预开放状态的相互作用可能会促进随后的通道开放,从而解释了箭毒蛙毒素诱导的通道激活负向偏移。

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