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Reversibility and mode of action of Black Widow spider venom on the vertebrate neuromuscular junction

机译:黑寡妇蜘蛛毒液对脊椎动物神经肌肉接头的可逆性和作用方式

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摘要

Black widow spider venom (BWSV) stimulates transmitter release and depletes synaptic vesicles from muscles bathed in a sodium free medium containing 1 mM EGTA. However, frog neuromuscular junctions treated with BWSV in glucosamine Ringer's and post-treated with antivenin recover normal function. This suggests that probably the permanent block of neuromuscular transmission is due to changes in permeability of the nerve ending plasma membrane to cations such as Na+. When BWSV is applied in a medium lacking divalent cations and containing 1 mM EGTA, in most of the cases no effect is observed. We found that this inhibition can be overcome in three ways: (a) by adding divalent cations to the medium; (b) by increasing the tonicity of the medium with sucrose; (c) by raising the temperature of the medium. These results suggest that the lack of divalent cations influences the membrane fluidity. Moreover, in view of the report by Yahara and Kakimoto-Sameshima (1977. Proc. Natl. Acad. Sci. U.S.A. 74:4511--4515) that hypertonic media induce capping of surface receptors in lymphocytes and thymocytes, we think that these data further support the hypothesis that BWSV stimulates release by a dual mode of action; namely, it increases the nerve ending permeability to cations and also stimulates release directly via a process of redistribution of membrane components, a process which may also inhibit vesicle recycling.
机译:黑寡妇蜘蛛毒液(BWSV)刺激变送器释放,并消耗沐浴在含有1 mM EGTA的无钠培养基中的肌肉的突触小泡。但是,在葡萄糖胺林格氏液中用BWSV处理并用抗静脉蛋白进行后处理的青蛙神经肌肉接头恢复了正常功能。这表明可能是神经肌肉传递的永久性阻滞是由于神经末梢质膜对阳离子(如Na +)的通透性变化所致。当在缺乏二价阳离子且含有1 mM EGTA的培养基中使用BWSV时,在大多数情况下均未观察到效果。我们发现可以通过三种方式克服这种抑制作用:(a)通过向介质中添加二价阳离子; (b)通过增加蔗糖培养基的渗透性; (c)通过升高介质的温度。这些结果表明缺乏二价阳离子会影响膜的流动性。此外,根据Yahara和Kakimoto-Sameshima的报告(1977. Proc。Natl。Acad。Sci。USA 74:4511--4515),高渗介质会诱导淋巴细胞和胸腺细胞表面受体的加帽,我们认为这些数据进一步支持以下假设:BWSV通过双重作用方式刺激释放;即,它增加了神经末梢对阳离子的通透性,并且还通过膜成分的重新分布过程直接刺激了释放,该过程也可能抑制了囊泡的再循环。

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