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大鼠神经肌肉接头处乙酰胆碱酯酶的高分辨率定位

High-resolution localization of acetylcholinesterase at the rat neuromuscular junction.

作者信息

Schätz C R, Veh R W

机构信息

Department of Anatomy, Ruhr-Universität Bochum, Federal Republic of Germany.

出版信息

J Histochem Cytochem. 1987 Nov;35(11):1299-307. doi: 10.1177/35.11.3655326.

Abstract

To overcome the limited ultrastructural resolution of conventional acetylcholinesterase (AChE) ultrahistochemistry, acetylcholine (ATCh) was used to reduce the rate of enzymic thiocholine liberation. The conventionally limited resolution is mainly due to the high focal activity of the enzyme in neural structures, because cleavage of substrate is faster than histochemical trapping reactions. Therefore, using the copper-thiocholine method, we investigated the reduction of thiocholine liberation by acetylcholine (ACh). As examined biochemically, the apparent Ki for ACh was close to the Km for ATCh. The ACh/ATCh ratio, therefore, determined the reduction of thiocholine production in histochemical experiments. In addition, the morphological appearance of the precipitated reaction product after its changes during the histochemical procedure was monitored using electric eel AChE immobilized on Sepharose 4B. The improved fine structural resolution at 40- to 100-fold excess of ACh over ATCh is demonstrated at the neuromuscular junction of rat lumbricalis muscle. The highest focal enzyme activity is found at the presynaptic membrane and in the secondary cleft, but not on top of the junctional folds, indicating the separation of esterase and nicotinic receptors. The physiological events during neuromuscular transmission are discussed on the basis of the new "gradient switch hypothesis" suggested in this report.

摘要

为克服传统乙酰胆碱酯酶(AChE)超组织化学有限的超微结构分辨率,使用乙酰胆碱(ATCh)来降低酶促硫代胆碱释放速率。传统上有限的分辨率主要是由于神经结构中酶的高焦点活性,因为底物的裂解比组织化学捕获反应更快。因此,我们采用铜 - 硫代胆碱法研究了乙酰胆碱(ACh)对硫代胆碱释放的降低作用。经生化检测,ACh的表观抑制常数(Ki)接近ATCh的米氏常数(Km)。因此,在组织化学实验中,ACh/ATCh比值决定了硫代胆碱生成的减少量。此外,使用固定在琼脂糖4B上的电鳗AChE监测了组织化学过程中沉淀反应产物变化后的形态外观。在大鼠蚓状肌的神经肌肉接头处,当ACh比ATCh过量40至100倍时,超微结构分辨率得到了改善。最高的焦点酶活性出现在突触前膜和次级裂隙处,而不是在突触褶皱顶部,这表明酯酶和烟碱受体是分离的。基于本报告中提出的新“梯度转换假说”,讨论了神经肌肉传递过程中的生理事件。

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