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Activation of ion channels in the frog endplate by several analogues of acetylcholine.

机译:乙酰胆碱的几种类似物激活青蛙终板中的离子通道。

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摘要

1. Single-ion-channel recording has been used to estimate the equilibrium concentration-response relationship for several acetylcholine analogues. The response, corrected for desensitization, was taken as the probability of a channel being open during clusters of openings that were separated by desensitized periods. 2. All agonists were able to block the channels which they themselves opened. Carbachol, suberyldicholine and the sulphonium analogue of acetylcholine were all found to be efficacious agonists in the sense that the results indicate that all of them, in sufficiently high concentration, would be able to open 90% or more of channels if it were not for channel block. 3. In the case of suberyldicholine the results are much as predicted by the interpretation of the fine structure of channel openings at low agonist concentrations. 4. The maximum probability of opening that could be obtained with decamethonium and with phenyltrimethylammonium was low (below 4%), and it was not possible to distinguish whether this was wholly a result of the powerful (relative to activation potency) channel-blocking action of these agonists, or whether it was to some extent attributable to their being genuine partial agonists. 5. The results suggest that, for a range of agonists, differences in equilibrium potency are usually more strongly influenced by affinity for binding to the resting state of the receptor than by ability to activate the receptor once bound, though in the case of suxamethonium (relative to acetylcholine) the contributions of each factor are similar.
机译:1.单离子通道记录已用于估计几种乙酰胆碱类似物的平衡浓度-响应关系。经过脱敏校正的响应被视为通道的几率被脱敏周期分隔开的概率。 2.所有激动剂都能够阻止他们自己打开的通道。从结果表明所有足够高的浓度下,如果不用于通道,它们都可以打开90%或更多的通道,因此,发现卡巴胆碱,辛二酰胆碱和乙酰胆碱的analogue类似物都是有效的激动剂。块。 3.对于辛二酰胆碱,其结果与低激动剂浓度下通道开口的精细结构的解释所预测的一样。 4.十甲基铵和苯基三甲基铵可获得的最大打开可能性很低(低于4%),无法区分这是否完全是强大的(相对于激活潜能)通道阻滞作用的结果这些激动剂,或者在某种程度上归因于它们是真正的部分激动剂。 5.结果表明,对于一定范围的激动剂,平衡效能的差异通常受与受体静止状态结合的亲和力的影响要强于受受体一旦结合后激活受体的能力的影响,尽管在丁二铵的情况下(相对于乙酰胆碱),每个因子的贡献相似。

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