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正常和病理肌肉运动终板处乙酰胆碱受体的超微结构研究。

Ultrastructural studies on the acetylcholine receptor at motor end plates of normal and pathologic muscles.

作者信息

Porter C W, Barnard E A

出版信息

Ann N Y Acad Sci. 1976;274:85-107. doi: 10.1111/j.1749-6632.1976.tb47678.x.

Abstract

The acetylcholine receptors at the mammalian motor end plate have been counted and their distribution there determined ultrastructurally. Electron microscope autoradiography applied to muscles labeled with alpha-(3H)bungarotoxin was used for this purpose. The receptors are distributed asymmetrically along the postsynaptic membrane, being concentrated at the fold crests-that portion nearest to the presynaptic membrane. The density of receptor sites at that region is estimated to be 20,000-25,000 per mum2 of membrane surface. This density holds for the several species and muscle types thus far examined and appears to be a constant parameter of the motor end plate. It determines the limit of responsiveness to acetylcholine. By contrast, the enzyme acetylcholinesterase is found to be distributed evenly over the folds and may reside in the intersynaptic matrix. When mouse diaphragm end plates from dystrophic animals or animals following 5-day denervation were similarly examined, no significant alterations in either the density or the distribution of the receptor sites were found. Similarly, dystrophic muscles in chickens possess an unaltered number of receptors at their end plates. A model is outlined to correlate receptor and cholinesterase concentrations with known aspects of transmitter release. These findings may have relevance to some of the electrophysiological abnormalities seen in myasthenia gravis.

摘要

已对哺乳动物运动终板处的乙酰胆碱受体进行了计数,并通过超微结构确定了它们在该处的分布。为此,使用了电子显微镜放射自显影技术,对用α-(3H)银环蛇毒素标记的肌肉进行观察。受体沿突触后膜呈不对称分布,集中在褶皱嵴处,即最靠近突触前膜的部分。该区域受体位点的密度估计为每平方微米膜表面20,000 - 25,000个。到目前为止,在已检测的几种物种和肌肉类型中,这种密度都是如此,并且似乎是运动终板的一个恒定参数。它决定了对乙酰胆碱反应性的限度。相比之下,发现乙酰胆碱酯酶均匀分布在褶皱上,可能存在于突触间基质中。当对营养不良动物或去神经5天的动物的小鼠膈肌终板进行类似检查时,未发现受体位点的密度或分布有明显改变。同样,鸡的营养不良肌肉终板处的受体数量也未改变。概述了一个模型,将受体和胆碱酯酶浓度与递质释放的已知方面联系起来。这些发现可能与重症肌无力中出现的一些电生理异常情况有关。

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