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ω-芋螺毒素-IVA和ω-芋螺毒素-MVIIC对小鼠运动神经末梢神经束膜Ca++及Ca(++)激活的K+电流的影响。

Effects of omega-agatoxin-IVA and omega-conotoxin-MVIIC on perineurial Ca++ and Ca(++)-activated K+ currents of mouse motor nerve terminals.

作者信息

Xu Y F, Atchison W D

机构信息

Department of Pharmacology, Michigan State University, East Lansing, USA.

出版信息

J Pharmacol Exp Ther. 1996 Dec;279(3):1229-36.

PMID:8968345
Abstract

Effects of omega-agatoxin-IVA (omega-Aga-IVA) and omega-conotoxin-MVIIC (omega-CTx-MVIIC) on mouse motor nerve terminal Ca+2 currents and Ca(+2)-activated K+ currents (IK,Ca) were compared using the triangularis sterni preparation and perineurial recording techniques. omega-Aga-IVA caused concentration- and time-dependent block of both the fast (ICa-f) and slow (ICa-s) components of Ca+2 current. Low concentrations (10 nM) caused preferential block of ICa-s. Higher concentrations (100-150 nM) of omega-Aga-IVA blocked ICa-f effectively. omega-CTx-MVIIC blocked both ICa-s and ICa-f with equal sensitivity; however, higher concentrations and longer exposure times than those required for omega-Aga-IVA were needed. omega-CTx-MVIIC could block the residual ICa-f that remained after pretreatment with Cd+2 or omega-Aga-IVA. Increasing the extracellular Ca+2 concentration partially antagonized the effects of both omega-Aga-IVA and omega-CTx-MVIIC on ICa-s and ICa-f. Washing the preparation with toxin-free solution only slightly antagonized the effect of omega-Aga-IVA and was ineffective in omega-CTx-MVIIC-treated preparations. Low concentrations of omega-Aga-IVA and omega-CTx-MVIIC increased the duration of IK,Ca whereas higher concentrations reduced the amplitude of IK,Ca. Thus, at mouse motor nerve terminals, both omega-Aga-IVA- and omega-CTx-MVIIC-sensitive Ca+2 currents exist. omega-Aga-IVA appears to be more selective in blocking nerve terminal Ca+2 current than does omega-CTx-MVIIC. Paradoxically, block of ICa-s alone by omega-Aga-IVA and, to a lesser extent, omega-CTx-MVIIC was associated with increased duration of IK,Ca whereas block of ICa-s and ICa-f by omega-Aga-IVA and omega-CTx-MVIIC was associated with reduced amplitude of IK,Ca.

摘要

使用胸骨三角肌标本和神经束膜记录技术,比较了ω-芋螺毒素-IVA(ω-Aga-IVA)和ω-芋螺毒素-MVIIC(ω-CTx-MVIIC)对小鼠运动神经末梢Ca+2电流和Ca(+2)激活的K+电流(IK,Ca)的影响。ω-Aga-IVA引起Ca+2电流的快速(ICa-f)和慢速(ICa-s)成分出现浓度和时间依赖性阻滞。低浓度(10 nM)优先阻滞ICa-s。较高浓度(100 - 150 nM)的ω-Aga-IVA有效阻滞ICa-f。ω-CTx-MVIIC以相同的敏感性阻滞ICa-s和ICa-f;然而,所需的浓度和暴露时间比ω-Aga-IVA更高、更长。ω-CTx-MVIIC可以阻滞在用Cd+2或ω-Aga-IVA预处理后残留的ICa-f。增加细胞外Ca+2浓度可部分拮抗ω-Aga-IVA和ω-CTx-MVIIC对ICa-s和ICa-f的作用。用无毒素溶液冲洗标本仅轻微拮抗ω-Aga-IVA的作用,而对用ω-CTx-MVIIC处理的标本无效。低浓度的ω-Aga-IVA和ω-CTx-MVIIC增加IK,Ca的持续时间,而较高浓度则降低IK,Ca的幅度。因此,在小鼠运动神经末梢,存在对ω-Aga-IVA和ω-CTx-MVIIC敏感的Ca+2电流。ω-Aga-IVA在阻滞神经末梢Ca+2电流方面似乎比ω-CTx-MVIIC更具选择性。矛盾的是,ω-Aga-IVA单独阻滞ICa-s以及在较小程度上ω-CTx-MVIIC阻滞ICa-s与IK,Ca持续时间增加有关,而ω-Aga-IVA和ω-CTx-MVIIC同时阻滞ICa-s和ICa-f与IK,Ca幅度降低有关。

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