Alderdice M T, Volle R L
J Pharmacol Exp Ther. 1978 Apr;205(1):58-68.
The excitatory phase of the biphasic action on transmitter release of the neurotoxin, beta-bungarotoxin (beta-BuTX; 0.5 microgram ml-1), was studied on miniature end-plate potentials (MEPPs) at frog sciatic nerve-sartorius muscle junctions. The most common type of excitatory response was characterized by a continuous increase in MEPP frequency that reached a plateau; a less common form was characterized by irregular episodic bursts of firing. There was a direct relationship between toxin activity and [K+]O (2.5-10.0 mM) with virtually no effect of the toxin at normal [K]O+ at the concentration of toxin used. In the absence of Mg++, there was a paradoxical inverse relationship between toxin activity and [Ca++]O (0.5-4.0 mM) at higher [K+]O. However, in the presence of 1.0 mM Mg++ the increased MEPP frequency produced by beta-BuTX was independent of [Ca++]O. The action of beta-BuTX was very sensitive to blockade by Mg++. Toxin activity was demonstrated in a Sr++-containing, Ca++-free solution, but not in a Mg++-containing, Ca++-free solution. It is probable that beta-BuTX causes a slight depolarization of the nerve terminals by a mechanism not sensitive to blockade by tetrodotoxin and that the ability of beta-BuTX to depolarize the terminals can account for the enhancement of the response by raising [K+]O and the depression of the response by Mg++. Alternatively, beta-BuTX could be producing its effects by some, as yet undefined, direct action on the release process.
在青蛙坐骨神经-缝匠肌接头处,研究了神经毒素β-银环蛇毒素(β-BuTX;0.5微克/毫升)对递质释放双相作用的兴奋期,以微小终板电位(MEPPs)为指标。最常见的兴奋反应类型表现为MEPP频率持续增加并达到平稳状态;较不常见的形式表现为不规则的阵发性放电。毒素活性与细胞外钾离子浓度[K⁺]O(2.5 - 10.0毫摩尔)呈直接关系,在所使用的毒素浓度下,正常细胞外钾离子浓度时毒素几乎无作用。在无镁离子的情况下,在较高的[K⁺]O时,毒素活性与细胞外钙离子浓度[Ca²⁺]O(0.5 - 4.0毫摩尔)呈反常的反比关系。然而,在存在1.0毫摩尔镁离子的情况下,β-银环蛇毒素引起的MEPP频率增加与[Ca²⁺]O无关。β-银环蛇毒素的作用对镁离子的阻断非常敏感。在含锶离子、无钙离子的溶液中可证明毒素活性,但在含镁离子、无钙离子的溶液中则无。β-银环蛇毒素可能通过一种对河豚毒素阻断不敏感的机制使神经末梢轻微去极化,并且β-银环蛇毒素使末梢去极化的能力可以解释通过提高[K⁺]O增强反应以及通过镁离子抑制反应的现象。或者,β-银环蛇毒素可能通过对释放过程的某种尚未明确的直接作用来产生其效应。