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首页> 外文期刊>Trends in Neurosciences >Agrin orchestrates synaptic differentiation at the vertebrate neuromuscular junction.
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Agrin orchestrates synaptic differentiation at the vertebrate neuromuscular junction.

机译:Agrin协调脊椎动物神经肌肉接头处的突触分化。

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The synapse is a key structure that is involved in perception, learning and memory. Understanding the sequence of steps that is involved in establishing synapses during development might also help to understand mechanisms that cause changes in synapses during learning and memory. For practical reasons, most of our current knowledge of synapse development is derived from studies of the vertebrate neuromuscular junction (NMJ). Several lines of evidence strongly suggest that motor axons release the molecule agrin to induce the formation of the postsynaptic apparatus in muscle fibers. Recent advances implicate proteins such as dystroglycan, MuSK, and rapsyn in the transduction of agrin signals. Recently, additional functions of agrin have been discovered, including the upregulation of gene transcription in myonuclei and the control of presynaptic differentiation. Agrin therefore appears to play a unique role in controlling synaptic differentiation on both sides of the NMJ.
机译:突触是涉及感知,学习和记忆的关键结构。了解在开发过程中建立突触所涉及的步骤顺序也可能有助于理解在学习和记忆过程中引起突触变化的机制。出于实际原因,我们目前对突触发展的大多数知识都来自脊椎动物神经肌肉接头(NMJ)的研究。几条证据强烈表明,运动轴突释放了分子凝集素,以诱导肌肉纤维中突触后装置的形成。最近的进展暗示了诸如dystroglycan,MuSK和rapsyn的蛋白质在凝集素信号转导中的作用。最近,已经发现了凝集素的其他功能,包括肌核中基因转录的上调和突触前分化的控制。因此,Agrin似乎在控制NMJ两侧的突触分化中起独特作用。

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