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质子对动作电位的激发及其对胆碱能传递的潜在影响

On the excitation of action potentials by protons and its potential implications for cholinergic transmission.

作者信息

Fillafer Christian, Schneider Matthias F

机构信息

Biological Physics Group, Department of Mechanical Engineering, Boston University, 110 Cummington St., Boston, MA, 02215, USA.

出版信息

Protoplasma. 2016 Mar;253(2):357-65. doi: 10.1007/s00709-015-0815-4. Epub 2015 Apr 15.

Abstract

One of the most conserved mechanisms for transmission of a nerve pulse across a synapse relies on acetylcholine (ACh). Ever since the Nobel Prize-winning works of Dale and Loewi, it has been assumed that ACh-subsequent to its action on a postsynaptic cell-is split into inactive by-products by acetylcholinesterase (AChE). Herein, the widespread assumption of inactivity of ACh's hydrolysis products is falsified. Excitable cells (Chara braunii internodes), which had previously been unresponsive to ACh, became ACh-sensitive in the presence of AChE. The latter was evidenced by a striking difference in cell membrane depolarization upon exposure to 10 mM intact ACh (∆V = -2 ± 5 mV) and its hydrolysate (∆V = 81 ± 19 mV), respectively, for 60 s. This pronounced depolarization, which also triggered action potentials, was clearly attributed to one of the hydrolysis products: acetic acid (∆V = 87 ± 9 mV at pH 4.0; choline ineffective in the range 1-10 mM). In agreement with our findings, numerous studies in the literature have reported that acids excite gels, lipid membranes, plant cells, erythrocytes, as well as neurons. Whether excitation of the postsynaptic cell in a cholinergic synapse is due to protons or due to intact ACh is a most fundamental question that has not been addressed so far.

摘要

神经脉冲通过突触传递的最保守机制之一依赖于乙酰胆碱(ACh)。自从戴尔和洛伊维获得诺贝尔奖的研究成果以来,人们一直认为乙酰胆碱在作用于突触后细胞后,会被乙酰胆碱酯酶(AChE)分解为无活性的副产物。在此,乙酰胆碱水解产物无活性这一普遍假设被证明是错误的。以前对乙酰胆碱无反应的可兴奋细胞(轮藻节间细胞),在有乙酰胆碱酯酶存在的情况下变得对乙酰胆碱敏感。这一点通过分别暴露于10 mM完整乙酰胆碱(∆V = -2 ± 5 mV)及其水解产物(∆V = 81 ± 19 mV)60秒后细胞膜去极化的显著差异得到证明。这种明显的去极化,也引发了动作电位,显然归因于其中一种水解产物:乙酸(在pH 4.0时∆V = 87 ± 9 mV;胆碱在1 - 10 mM范围内无作用)。与我们的研究结果一致,文献中的大量研究报告称,酸会刺激凝胶、脂质膜、植物细胞、红细胞以及神经元。胆碱能突触中突触后细胞的兴奋是由于质子还是由于完整的乙酰胆碱,这是一个迄今为止尚未解决的最基本问题。

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