首页> 美国政府科技报告 >Microtubule-Dissociating Drugs and A23187 Reveal Differences in Inhibition ofSynaptosomal Transmitter Release by Botulinum Neurotoxins Types A and B
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Microtubule-Dissociating Drugs and A23187 Reveal Differences in Inhibition ofSynaptosomal Transmitter Release by Botulinum Neurotoxins Types A and B

机译:微管解离药物和a23187揭示了a型和B型肉毒杆菌神经毒素对松鼠体发射器释放抑制的差异

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The inhibitory effects of botulinum neurotoxins types A and B on Ca2+-dependentevoked release of (3H)noradrenaline from rat cerebrocortical synaptosomes were compared and their molecular basis investigated. A23187, a Ca2+ ionophore, proved more efficacious in reversing the blockade produced by type A than that by B, whereas the actions of neither were changed by increasing intraterminal cyclic GMP levels using 8-bromo-cyclic GMP or nitroprusside. Disruption of the actin-based cytoskeleton with cytochalasin D did not alter the inhibition seen subsequently with either toxin. However, prior disassembly of microtubules with colchicine, nocodazole, or griseofulvin reduced the potency of type B toxin, but not that of type A toxin; stabilization of the microtubules with taxol counteracted this effect of colchicine. Because colchicine treatment of synaptosomes did not interfere with the measureable binding of type B toxin or its apparent uptake, it appears to act intracellularly. Collectively, these data suggest that botulinum neurotoxins types A and B inactivate transmitter release by interaction at different sites in the process.

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