首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >The role of nitric oxide signaling in the formation of the neuromuscular junction.
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The role of nitric oxide signaling in the formation of the neuromuscular junction.

机译:一氧化氮信号在神经肌肉接头形成中的作用。

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摘要

The formation of the vertebrate neuromuscular junction (NMJ) depends on the action of neural agrin on the muscle cell. The requirement for agrin and its receptor, muscle-specific kinase (MuSK), has been well established over the past 20 years. However, the signaling mechanisms through which agrin and MuSK cause synaptic differentiation are not well understood. New evidence from studies of muscle cells in culture and in embryos indicates that nitric oxide (NO) is an effector of agrin-induced postsynaptic differentiation at the NMJ. Cyclic GMP (cGMP) production by guanylate cyclase appears to be an important downstream step in this pathway. Nitric oxide and cGMP regulate the activity of several kinases, some of which may influence interaction of dystrophin and utrophin with the actin cytoskeleton to mediate or modulate postsynaptic differentiation in muscle cells. These signaling molecules could also play a role in retrograde signaling to influence differentiation of presynaptic nerve terminals.
机译:脊椎动物神经肌肉接头(NMJ)的形成取决于神经凝集素对肌肉细胞的作用。在过去的20年中,对凝集素及其受体肌肉特异性激酶(MuSK)的需求已得到很好的确立。但是,还没有很好地了解凝集素和MuSK引起突触分化的信号传导机制。来自培养物中和胚胎中的肌肉细胞研究的新证据表明,一氧化氮(NO)是NMJ上由凝集素诱导的突触后分化的效应子。鸟苷酸环化酶产生的循环GMP(cGMP)似乎是该途径中重要的下游步骤。一氧化氮和cGMP调节几种激酶的活性,其中一些激酶可能会影响肌营养不良蛋白和质养素与肌动蛋白细胞骨架的相互作用,从而介导或调节肌肉细胞中突触后的分化。这些信号分子也可以在逆行信号中发挥作用,以影响突触前神经末梢的分化。

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