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Neuron-glia interactions at the neuromuscular synapse

机译:神经元 - 神经肌肌突触的相互作用

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The contribution of glial cells in the regulation of the transfer of information in CNS and PNS is now increasingly recognized. Perisynaptic Schwann cells (PSCs), glial cells at the neuromuscular junction (NMJ), have proven to be an exceptionally important model for studying these roles. PSCs surround nerve terminals at the NMJ and are activated by transmitter release in a frequency-dependent manner. All of these receptors, except one type, are coupled to G proteins and can be regrouped into two categories: activators and modulators of PSCs. In the former category are muscarinic (unknown subtype) and purinergic receptors (P2X and P2Y). In the latter category are adenosine (A_1), Substance P (NK-1) and CGRP receptors. All receptors coupled to G proteins induce the release of Ca~(2+) from internal stores. In return for this activation, PSCs modulate synaptic activity and short-term plasticity. In this review, we will focus on the role of purines in the induction of glial cell activity and their possible involvement in the modulation of synaptic transmission as a result of the synaptic-induced glial activity.
机译:现在越来越识别了CNS和PNS中信息转移调节中的胶质细胞的贡献。 Perisynaptic Sc​​hwann细胞(PSC),神经肌肉交界处(NMJ)的胶质细胞已被证明是研究这些角色的绝佳重要模式。 PSC在NMJ处环绕神经终端,并以频率依赖的方式通过发射器释放激活。除了一种类型外,所有这些受体都与G蛋白联合,可以重新包成两类:PSC的激活剂和调节剂。在前类别是毒蕈碱(未知亚型)和嘌呤能受体(P2X和P2Y)。在后一种类别中是腺苷(A_1),物质P(NK-1)和CGRP受体。偶联蛋白质的所有受体诱导来自内部储备的Ca〜(2+)的释放。作为返回此激活,PSCS调制突触活动和短期可塑性。在本综述中,我们将专注于嘌呤在胶质细胞活动诱导中的作用及其可能参与突触诱导的胶质活动的突触传递调制。

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