Farley J M, Yeh J Z, Watanabe S, Narahashi T
J Gen Physiol. 1981 Mar;77(3):273-93. doi: 10.1085/jgp.77.3.273.
The effects of the n-alkyl derivatives of guanidine on the frog neuromuscular junction were studied using the two-microelectrode voltage clamp and other electrophysiological techniques. Methyl-, ethyl-, and propylguanidine stimulated the nerve-evoked release of transmitter. However, amyl-and octylguanidine had no apparent presynaptic action. All of the derivatives blocked the postsynaptic response to acetylcholine, the potency sequence being octyl-greater than amyl-greater than propyl-, methyl-greater than ethylguanidine. Methyl- and octylguanidine did not protect the receptor from alpha-bungarotoxin block, suggesting that these compounds do not bind to the receptor but probably block the ionic channel. Methyl-, ethyl-, and propylguanidine shortened inward endplate currents but prolonged outward currents. Amylguanidine prolonged both inward and outward endplate currents, and the currents became biphasic at negative membrane potentials. Octylguanidine increased the rate of decay of endplate currents at all potentials. All of the derivatives blocked inward endplate currents more markedly than outward currents, resulting in a highly nonlinear current-voltage relation. Methyl-, ethyl-, and propylguanidine reversed the voltage dependence of endplate current decay, while amyl-and octylguanidine reduced the voltage dependence of endplate current decay. Octylguanidine appears to block the ionic channel in both the open and the closed state. The block of the open channel follows pseudo-first-order kinetics with a forward rate constant of 4-6 X 10(7) M-1 s-1.
使用双微电极电压钳和其他电生理技术研究了胍的正烷基衍生物对青蛙神经肌肉接头的影响。甲基胍、乙基胍和丙基胍刺激神经诱发的递质释放。然而,戊基胍和辛基胍没有明显的突触前作用。所有衍生物都阻断了对乙酰胆碱的突触后反应,效力顺序为辛基胍>戊基胍>丙基胍>甲基胍>乙基胍。甲基胍和辛基胍不能保护受体免受α-银环蛇毒素的阻断,这表明这些化合物不与受体结合,但可能阻断离子通道。甲基胍、乙基胍和丙基胍缩短内向终板电流,但延长外向电流。戊基胍延长内向和外向终板电流,并且在负膜电位下电流变为双相。辛基胍在所有电位下均增加终板电流的衰减速率。所有衍生物阻断内向终板电流比外向电流更明显,导致电流-电压关系高度非线性。甲基胍、乙基胍和丙基胍使终板电流衰减的电压依赖性反转,而戊基胍和辛基胍降低终板电流衰减的电压依赖性。辛基胍似乎在开放和关闭状态下均阻断离子通道。开放通道的阻断遵循假一级动力学,正向速率常数为4-6×10⁷ M⁻¹ s⁻¹。