首页> 美国卫生研究院文献>The Journal of Physiology >Correlation of agonist structure with acetylcholine receptor kinetics: studies on the frog end-plate and on chick embryo muscle.
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Correlation of agonist structure with acetylcholine receptor kinetics: studies on the frog end-plate and on chick embryo muscle.

机译:激动剂结构与乙酰胆碱受体动力学的相关性:对青蛙终板和雏鸡胚胎肌肉的研究。

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摘要

The apparent lifetimes of frog end-plate channels activated by several nicotinic agonists have been determined with voltage-jump and fluctuation analysis techniques. The agonists were monoquaternary, N-substituted derivatives of trimethylammonium (TMA). Methyl TMA activated channels which had apparent lifetimes about 3-4 times shorter than acetylcholine (ACh)-activated channels. This result was confirmed with single-channel recordings from embryonic chick skeletal muscle. Channel conductance and voltage dependence of channel lifetime were similar for methyl TMA- and ACh-activated channels. Methyl TMA showed no signs of blocking open end-plate channels. Ethyl TMA, acetylthiocholine, cholinethiol and carbamylcholine all activated channels similar to methyl TMA-activated channels with regard to lifetime. None of these agonists appeared to block end-plate channels in the employed concentrations. 4-ketopentyl TMA, which contains a methylene group in place of the ether oxygen of ACh, sometimes opened end-plate channels with similar apparent lifetimes as those opened by ACh. Single-channel recordings showed that bursts of current from channels activated by 4-ketopentyl TMA have similar durations as do those activated by ACh. Pentyl TMA and benzyl TMA block open end-plate channels even when delivered at doses which elicit very small currents. It is concluded that the ester moiety of ACh serves to stabilize the open conformation of the channel.
机译:已通过跳电压和波动分析技术确定了由多种烟碱激动剂激活的青蛙终板通道的表观寿命。激动剂是三甲基铵(TMA)的单季N取代衍生物。甲基TMA活化通道的表观寿命比乙酰胆碱(ACh)活化通道的寿命短约3-4倍。胚胎雏鸡骨骼肌的单通道记录证实了这一结果。甲基TMA和ACh激活的通道的通道电导和通道寿命的电压依赖性相似。甲基TMA没有显示出堵塞开放端板通道的迹象。乙基TMA,乙酰硫胆碱,胆碱硫醇和氨甲酰胆碱在寿命方面均类似于甲基TMA激活的通道。在所采用的浓度下,这些激动剂均未出现阻断终板通道的作用。 4-酮戊基TMA含有一个亚甲基代替ACh的醚氧,有时会打开端板通道,其表观寿命与ACh所打开的通道相似。单通道记录表明,由4-酮戊基TMA激活的通道的电流突发与ACh激活的持续时间相似。戊基TMA和苄基TMA即使以引起很小电流的剂量递送,也会阻塞开放的终板通道。结论是ACh的酯部分用于稳定通道的开放构象。

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