首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >The relationship of neuromuscular synapse elimination to synaptic degeneration and pathology: insights from WldS and other mutant mice.
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The relationship of neuromuscular synapse elimination to synaptic degeneration and pathology: insights from WldS and other mutant mice.

机译:神经肌肉突触消除与突触变性和病理的关系:WldS和其他突变小鼠的见解。

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Neuromuscular synapse elimination, Wallerian degeneration and peripheral neuropathies are not normally considered as related phenomena. However, recent studies of mutant and transgenic mice, particularly the Wld(S) mutant-in which orthograde degeneration is delayed following axotomy-suggest that re-evaluation of possible links between natural, traumatic and pathogenic regression of synapses may be warranted. During developmental synapse elimination from polyneuronally innervated junctions, some motor nerve terminals progressively and asynchronously vacate motor endplates. A form of asynchronous synapse withdrawal, strongly resembling synapse elimination, also occurs from mononeuronally-innervated motor endplates following axotomy in young adult Wld(S) mutant mice. A similar pattern is observed in skeletal muscles of several neuropathic mutants, including mouse models of dying-back neuropathies, motor neuron disease and-remarkably-models of neurodegenerative diseases such as Huntington's and Alzheimer'sdiseases. Taken together with recent analysis of synaptic remodelling at neuromuscular junctions in Drosophila, a strong candidate for a common regulatory mechanism in these diverse conditions is one based on protein ubiquitination/deubiquitination. Axotomised neuromuscular junctions in Wld(S) mutant mice offer favourable experimental opportunities for examining developmental mechanisms of synaptic regression, that may also benefit our understanding of how degeneration in the synaptic compartment of a neuron is initiated, and its role in progressive, whole-cell neuronal degeneration.
机译:通常不将神经肌肉突触消除,Wallerian变性和周围神经病视为相关现象。然而,最近对突变和转基因小鼠的研究,特别是Wld(S)突变体,其中在进行轴突切开术后原位变性被延迟,这建议必须重新评估突触的自然,创伤和病原性回归之间的可能联系。在从多神经支配连接消除发育突触的过程中,一些运动神经末梢逐渐和异步地腾空运动终板。幼年成年Wld(S)突变小鼠进行轴索切开术后,单神经支配的运动终板也出现了一种与突触消除非常相似的异步突触撤回形式。在几种神经性突变体的骨骼肌中观察到类似的模式,包括垂死性神经病的小鼠模型,运动神经元疾病以及诸如亨廷顿病和阿尔茨海默氏病的神经退行性疾病的显着模型。与最近在果蝇的神经肌肉连接处的突触重塑的分析一起,在这些不同条件下共同调节机制的强大候选者是基于蛋白质泛素化/去泛素化的一种。 Wld(S)突变小鼠中的轴突神经肌肉接头提供了有利的实验机会,用于检查突触退化的发育机制,这也可能有助于我们了解神经元的突触区如何开始变性以及其在进行性全细胞中的作用神经元变性。

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