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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Non-additive potentiation of glutamate release by phorbol esters and metabotropic mGlu7 receptor in cerebrocortical nerve terminals.
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Non-additive potentiation of glutamate release by phorbol esters and metabotropic mGlu7 receptor in cerebrocortical nerve terminals.

机译:佛波酯和代谢型mGlu7受体在大脑皮层神经末梢中对谷氨酸的释放具有非加性增强作用。

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We recently showed that prolonged activation of metabotropic glutamate receptor 7 (mGlu7) potentiates glutamate release. This signalling involves phospholipase C activation via a pertussis toxin insensitive G protein and the subsequent hydrolysis of phosphatidylinositol (4,5)-bisphosphate. Release potentiation is independent of protein kinase C activation but it is dependent on the downstream release machinery, as reflected by the concomitant translocation of active zone Munc13-1 protein from the soluble to particulate fractions. Here we show that phorbol ester and mGlu7 receptor-dependent facilitation of neurotransmitter release is not additive, suggesting they share a common signalling mechanism. However, release potentiation is restricted to release sites that express N-type Ca(2+) channels, because phorbol ester and mGlu7 receptor-mediated release potentiation are absent in nerve terminals from mice lacking N-type Ca(2+) channels. In addition, phorbol esters but not mGlu7 receptors potentiate release at nerve terminals with P/Q-type Ca(2+) channels, although only under restricted conditions of Ca(2+) influx. The differential effect of phorbol esters at nerve terminals with either N- or P/Q-type Ca(2+) channels seems to be unrelated to the type Munc13 isoform expressed, and it is more likely dependent on other properties of the release machinery.
机译:我们最近表明,代谢型谷氨酸受体7(mGlu7)的延长激活会增强谷氨酸的释放。该信号传导涉及通过百日咳毒素不敏感的G蛋白激活磷脂酶C,随后水解磷脂酰肌醇(4,5)-双磷酸酯。释放增强与蛋白激酶C激活无关,但它取决于下游释放机制,这反映在活性区Munc13-1蛋白从可溶级分到颗粒级分的伴随移位中。在这里,我们显示佛波酯和神经递质释放的依赖mGlu7受体的促进作用不是累加的,表明它们共享一个共同的信号传导机制。但是,释放增强作用仅限于表达N型Ca(2+)通道的释放位点,因为在缺少N型Ca(2+)通道的小鼠的神经末梢没有佛波酯和mGlu7受体介导的释放增强作用。此外,佛波酯而不是mGlu7受体可增强P / Q型Ca(2+)通道在神经末梢的释放,尽管仅在有限的Ca(2+)流入条件下。佛波酯在神经末梢具有N-或P / Q型Ca(2+)通道的差异作用似乎与表达的Munc13同工型无关,它更可能取决于释放机制的其他特性。

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