首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Glycerotoxin stimulates neurotransmitter release from N-type Ca2+ channel expressing neurons.
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Glycerotoxin stimulates neurotransmitter release from N-type Ca2+ channel expressing neurons.

机译:甘油毒素刺激神经递质从表达N型Ca2 +通道的神经元释放。

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摘要

Glycerotoxin (GLTx) is capable of stimulating neurotransmitter release at the frog neuromuscular junction by directly interacting with N-type Ca2+ (Cav2.2) channels. Here we have utilized GLTx as a tool to investigate the functionality of Cav2.2 channels in various mammalian neuronal preparations. We first adapted a fluorescent-based high-throughput assay to monitor glutamate release from rat cortical synaptosomes. GLTx potently stimulates glutamate secretion and Ca2+ influx in synaptosomes with an EC50 of 50 pm. Both these effects were prevented using selective Cav2.2 channel blockers suggesting the functional involvement of Cav2.2 channels in mediating glutamate release in this system. We further show that both Cav2.1 (P/Q-type) and Cav2.2 channels contribute equally to depolarization-induced glutamate release. We then investigated the functionality of Cav2.2 channels at the neonatal rat neuromuscular junction. GLTx enhances both spontaneous and evoked neurotransmitter release causing a significant increase in the frequency of postsynaptic action potentials. These effects were blocked by specific Cav2.2 channel blockers demonstrating that either GLTx or its derivatives could be used to selectively enhance the neurotransmitter release from Cav2.2-expressing mammalian neurons.
机译:甘油毒素(GLTx)通过与N型Ca2 +(Cav2.2)通道直接相互作用,能够刺激青蛙神经肌肉接头处的神经递质释放。在这里,我们已经利用GLTx作为一种工具来研究各种哺乳动物神经元制剂中Cav2.2通道的功能。我们首先调整了基于荧光的高通量检测方法,以监测大鼠皮质突触小体中谷氨酸的释放。 GLTx以50 pm的EC50强烈刺激突触体中的谷氨酸分泌和Ca2 +流入。使用选择性的Cav2.2通道阻滞剂可防止这两种作用,这提示Cav2.2通道在介导该系统中谷氨酸释放中的功能参与。我们进一步表明,Cav2.1(P / Q型)和Cav2.2通道均等价于去极化诱导的谷氨酸释放。然后,我们调查了新生大鼠神经肌肉接头处Cav2.2通道的功能。 GLTx增强自发性和诱发性神经递质的释放,导致突触后动作电位的频率显着增加。这些作用被特定的Cav2.2通道阻滞剂阻​​滞,表明GLTx或其衍生物可用于选择性增强表达Cav2.2的哺乳动物神经元的神经递质释放。

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