Shaw K P, Aracava Y, Akaike A, Daly J W, Rickett D L, Albuquerque E X
Mol Pharmacol. 1985 Dec;28(6):527-38.
The actions of the carbamate cholinesterase inhibitors, physostigmine (Phy) and physostigmine methiodide (MetPhy), were studied on the acetylcholine receptor-ion channel complex (AChR) of skeletal muscles. Low concentrations of these agents produced cholinesterase inhibition which resulted in potentiation of nerve-elicited muscle twitches and an increased peak amplitude and prolongation of the decay time constant (tau EPC) of endplate currents (EPCs) elicited in frog (Rana pipiens) sartorius muscles. However, increasing concentrations of Phy depressed the peak amplitude and shortened the decay phase of the EPC with an apparent loss in the voltage dependence of tau EPC. At higher concentrations and depolarized potentials, EPC decays were double exponential. The effects of both Phy and MetPhy on the postsynaptic AChR complex were also evident in preparations pretreated with diisopropylfluorophosphate. Under these conditions, a linear relationship between the reciprocal of tau EPC and the concentration of these agents was observed. Single channel studies revealed that Phy (20-600 microM) shortened channel lifetime and decreased channel conductance at very high concentrations. In addition, Phy (0.5 microM) induced the appearance of channel openings with conductance similar to that of acetylcholine. High concentrations (greater than 50 microM) of this agent activated channel openings with decreased conductance. Similar results were obtained with MetPhy. Thus, the reversible cholinesterase inhibitors Phy and MetPhy altered the properties of the AChR by interacting as agonists capable of inducing desensitization and blockade.
研究了氨基甲酸酯类胆碱酯酶抑制剂毒扁豆碱(Phy)和毒扁豆碱甲碘化物(MetPhy)对骨骼肌乙酰胆碱受体 - 离子通道复合物(AChR)的作用。低浓度的这些药物产生胆碱酯酶抑制作用,导致神经诱发的肌肉抽搐增强,以及在蛙(牛蛙)缝匠肌中诱发的终板电流(EPC)的峰值幅度增加和衰减时间常数(tau EPC)延长。然而,随着Phy浓度增加,EPC的峰值幅度降低,衰减相缩短,tau EPC的电压依赖性明显丧失。在较高浓度和去极化电位下,EPC衰减呈双指数形式。在用二异丙基氟磷酸预处理的制剂中,Phy和MetPhy对突触后AChR复合物的作用也很明显。在这些条件下,观察到tau EPC的倒数与这些药物浓度之间呈线性关系。单通道研究表明,Phy(20 - 600 microM)在非常高的浓度下缩短通道寿命并降低通道电导。此外,Phy(0.5 microM)诱导出现电导与乙酰胆碱相似的通道开放。该药物高浓度(大于50 microM)激活电导降低的通道开放。MetPhy也得到了类似的结果。因此,可逆性胆碱酯酶抑制剂Phy和MetPhy通过作为能够诱导脱敏和阻断的激动剂相互作用来改变AChR的特性。