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吡啶斯的明与烟碱型乙酰胆碱受体-离子通道复合物的相互作用性质。I. 激动剂、脱敏和结合特性。

The nature of the interactions of pyridostigmine with the nicotinic acetylcholine receptor-ionic channel complex. I. Agonist, desensitizing, and binding properties.

作者信息

Pascuzzo G J, Akaike A, Maleque M A, Shaw K P, Aronstam R S, Rickett D L, Albuquerque E X

出版信息

Mol Pharmacol. 1984 Jan;25(1):92-101.

PMID:6323955
Abstract

The actions of pyridostigmine (Pyr), an anticholinesterase agent, were studied on the acetylcholine (ACh) receptor-ion channel complex and on the electrically excitable membrane of the frog cutaneous pectoris and sartorius muscles and the chronically denervated soleus muscle of the rat. Pyr at concentrations of 0.2-0.4 mM potentiated the indirect evoked muscle twitch and at concentrations greater than or equal to 0.8 mM depressed the indirect twitch with an IC50 of about 2 mM. Twitch depression produced by Pyr was reversed slowly, and after a 60-min wash only 59% of the control muscle twitch had returned. Pyr did not affect either the membrane potential or the muscle action potential. Pyr had several effects at the neuromuscular junction of the frog and rat. It decreased the peak amplitude of the end-plate current (EPC) in a voltage- and concentration-dependent manner. In contrast to diisopropylfluorophosphate, which depresses the EPC amplitude and induces a double exponential decay of the EPC and miniature end-plate current (MEPC), Pyr produced a marked prolongation of the time constants of EPC and MEPC decay while maintaining a single exponential decay. The decrease caused by Pyr of indirect twitch tension, EPC amplitude, and ACh sensitivity indicates mechanisms which limit the number and/or properties of conducting channels. The drug decreased channel conductance and prolonged channel lifetime as revealed by Fourier analysis of ACh-induced end-plate current fluctuations. An altered form of the conducting species induced by Pyr appears to be responsible for either the apparent agonist-induced depolarization or its ability to increase the affinity of ACh for its recognition site. Pyr was also found to inhibit the binding of ACh and alpha-bungarotoxin to receptor-rich membrane from the electric organ of Torpedo nobiliana, and to have a higher affinity for the receptor than for the ion channel binding sites. These actions are distinct from acetylcholinesterase inhibition caused by the agent. Strong evidence suggests that the direct influences of the agent on neuromuscular transmission involve at least three distinct, although possibly interacting, mechanisms: (a) a weak agonist action, (b) the formation of desensitized receptor-complex intermediates, and (c) the alteration of the conductance properties of active channels.

摘要

研究了抗胆碱酯酶药吡啶斯的明(Pyr)对乙酰胆碱(ACh)受体 - 离子通道复合物以及青蛙胸大肌和缝匠肌、大鼠长期去神经支配的比目鱼肌的电兴奋性膜的作用。浓度为0.2 - 0.4 mM的Pyr增强间接诱发的肌肉抽搐,浓度大于或等于0.8 mM时抑制间接抽搐,半数抑制浓度(IC50)约为2 mM。Pyr引起的抽搐抑制恢复缓慢,冲洗60分钟后,仅59%的对照肌肉抽搐恢复。Pyr对膜电位或肌肉动作电位均无影响。Pyr在青蛙和大鼠的神经肌肉接头处有多种作用。它以电压和浓度依赖性方式降低终板电流(EPC)的峰值幅度。与二异丙基氟磷酸不同,后者降低EPC幅度并诱导EPC和微小终板电流(MEPC)的双指数衰减,Pyr使EPC和MEPC衰减的时间常数显著延长,同时保持单指数衰减。Pyr导致间接抽搐张力、EPC幅度和ACh敏感性降低,表明其机制限制了传导通道的数量和/或特性。通过对ACh诱导的终板电流波动进行傅里叶分析发现,该药物降低了通道电导并延长了通道寿命。Pyr诱导的传导物种形式改变似乎是明显的激动剂诱导去极化或其增加ACh与其识别位点亲和力能力的原因。还发现Pyr抑制ACh和α - 银环蛇毒素与电鳐富含受体的膜的结合,并且对受体的亲和力高于对离子通道结合位点的亲和力。这些作用与该药物引起的乙酰胆碱酯酶抑制不同。有力证据表明,该药物对神经肌肉传递的直接影响至少涉及三种不同但可能相互作用的机制:(a)弱激动剂作用,(b)脱敏受体 - 复合物中间体的形成,以及(c)活性通道电导特性的改变。

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