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漏斗网蜘蛛毒素对神经垂体终末钙电流的影响。

Effects of funnel web spider toxin on Ca2+ currents in neurohypophysial terminals.

作者信息

Wang G, Lemos J R

机构信息

Worcester Foundation for Experimental Biology, Shrewsbury, MA 01545.

出版信息

Brain Res. 1994 Nov 14;663(2):215-22. doi: 10.1016/0006-8993(94)91266-1.

Abstract

Funnel web spider toxin (FTX) is reportedly a specific blocker of P-type Ca2+ channels. The effects of FTX on the Ca2+ currents of isolated neurohypophysial nerve terminals of the rat were investigated using the 'whole-cell' patch-clamp technique. Both the transient and long-lasting Ca2+ current components were maximally elicited by depolarization from a holding potential equal to the normal terminal resting potential (-90 mV). Externally applied FTX inhibited the high-voltage-threshold, transient component of the Ca2+ current in a concentration-dependent manner, with a half-maximal inhibition at a dilution of approximately 1:10000. FTX also shifted the peak current of the I-V relationship by +10 mV. The long-lasting Ca2+ current component, which is sensitive to L-type Ca2+ channel blockers, was insensitive to FTX. The transient current, which is sensitive to omega-conotoxin GVIA, was completely blocked by FTX. These results suggest that there could be a novel, inactivating Ca2+ channel in the rat neurohypophysial terminals which is affected by both N-type and P-type Ca2+ channel blockers.

摘要

据报道,漏斗网蜘蛛毒素(FTX)是P型Ca2+通道的特异性阻滞剂。采用“全细胞”膜片钳技术研究了FTX对大鼠离体神经垂体神经末梢Ca2+电流的影响。短暂性和持续性Ca2+电流成分均通过从等于正常末梢静息电位(-90 mV)的钳制电位进行去极化而最大程度地激发。细胞外应用的FTX以浓度依赖性方式抑制Ca2+电流的高电压阈值短暂性成分,在约1:10000的稀释度下达到半数最大抑制。FTX还使I-V关系的峰值电流正向偏移10 mV。对L型Ca2+通道阻滞剂敏感的持续性Ca2+电流成分对FTX不敏感。对ω-芋螺毒素GVIA敏感的短暂性电流被FTX完全阻断。这些结果表明,大鼠神经垂体末梢可能存在一种新型的失活Ca2+通道,其受N型和P型Ca2+通道阻滞剂的影响。

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