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[乙酰胆碱受体在神经肌肉突触处定位的机制]

[Mechanism for acetylcholine receptor localization at nerve-muscle synapse].

作者信息

Kuromi H

机构信息

Department of Neuropharmacology, School of Medicine, Chiba University, Japan.

出版信息

Nihon Yakurigaku Zasshi. 1987 Aug;90(2):73-81. doi: 10.1254/fpj.90.73.

Abstract

This paper summarizes the hypothesis proposed to explain the mechanism for AChR localization at the neuromuscular synapse. Two theories have been proposed to explain the neuronal control of extrajunctional AChR. One theory claimed that motoneurons decreased the ACh sensitivity of the extrajunctional membrane through neurotrophic influence. However, direct electrical stimulation of denervated muscles resulted in a decrease of extrajunctional ACh sensitivity, supporting the other hypothesis that loss of extrajunctional AChR of the innervated muscle is directly related to muscle activity per se. AChR clusters (high density of AChR) at the neuro-muscular junction were supposed to result from the association of nerves with preexisting AChR clusters. However, Xenopus nerve-muscle cocultures clearly demonstrated that AChR clusters at the neuromuscular junction were formed after the nerve came in contact with the muscle membrane. Two hypothesis are proposed for nerve-induced formation of AChR clusters. Preferential insertion of AChR into the end-plate was suggested by the finding that AChR messenger RNA was more abundant near to than far from the end-plate in adult muscle fibers. On the other hand, in cultured and embryonic muscles, AChR clusters were formed at nerve-muscle junctions through receptor redistribution which was mediated by the passive diffusion-trap mechanism.

摘要

本文总结了为解释乙酰胆碱受体(AChR)在神经肌肉突触处定位机制而提出的假说。已经提出了两种理论来解释神经对接头外AChR的控制。一种理论认为运动神经元通过神经营养作用降低接头外膜对ACh的敏感性。然而,对失神经肌肉的直接电刺激导致接头外ACh敏感性降低,这支持了另一种假说,即受神经支配肌肉的接头外AChR的丧失与肌肉活动本身直接相关。神经肌肉接头处的AChR簇(AChR高密度区)被认为是神经与预先存在的AChR簇结合的结果。然而,非洲爪蟾神经肌肉共培养物清楚地表明,神经肌肉接头处的AChR簇是在神经与肌膜接触后形成的。针对神经诱导的AChR簇形成提出了两种假说。成年肌纤维中靠近终板处的AChR信使核糖核酸比远离终板处的更丰富,这一发现提示AChR优先插入终板。另一方面,在培养的肌肉和胚胎肌肉中,AChR簇通过受体重新分布在神经肌肉接头处形成,而受体重新分布是由被动扩散捕获机制介导的。

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