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在钙和锶溶液中通过二项式分析检测到神经递质释放最后阶段存在两个不同过程的证据。

Evidence for two distinct processes in the final stages of neurotransmitter release as detected by binomial analysis in calcium and strontium solutions.

作者信息

Searl T J, Silinsky E M

机构信息

Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Medical School, 303 East Chicago Avenue, Chicago, IL 60611, USA.

出版信息

J Physiol. 2002 Mar 15;539(Pt 3):693-705. doi: 10.1113/jphysiol.2001.013129.

Abstract

The statistical parameters underlying acetylcholine (ACh) release were studied using Ca(2+) and Sr(2+) ions to promote ACh secretion. Experiments were performed at frog neuromuscular junctions using electrophysiological recording techniques. Increases in asynchronous ACh release, reflected as the frequency of occurrence of miniature end-plate potentials (MEPP(f)), were evoked by high potassium depolarization in either Ca(2+) or Sr(2+) solutions. Increases in MEPP(f) mediated by Ca(2+) were of very low probability and well-described by a Poisson distribution whilst similar MEPP(f) increases mediated by Sr(2+) were best described as a simple binomial distribution. From the binomial distribution in Sr(2+) solutions, values for the average probability of release (p) and the number of releasable ACh quanta (n) may be determined (whereby mean MEPP(f) = np). In Sr(2+) solutions, values of p were independent of both bin width and of the value of n, suggesting that both n and p were stationary. Calculations of p using the simple binomial distribution in Sr(2+) solutions gave theoretical values for the third moment of the mean which were indistinguishable from the experimental distribution. These results, in conjunction with Monte Carlo simulations of the data, suggest that spatial and temporal variance do not measurably affect the analysis. Synchronous ACh release evoked by nerve impulses (end-plate potentials, EPPs) follow a simple binomial distribution in both Ca(2+) and Sr(2+) solutions. Similar mean levels of synchronous ACh release (m, where m = np) were produced by lower values of p and higher values of n in Ca(2+) as compared to Sr(2+). The statistical analyses suggest the presence of two different Ca(2+)-dependent steps in the final stages of neurotransmitter release. The results are discussed in accordance with (i) statistical models for quantal neurotransmitter release, (ii) the role of Sr(2+) as a partial agonist for evoked ACh release, and (iii) the specific loci that may represent the sites of Ca(2+) and Sr(2+) sensitivity.

摘要

利用钙离子(Ca(2+))和锶离子(Sr(2+))促进乙酰胆碱(ACh)分泌,对其释放的统计参数进行了研究。实验在青蛙神经肌肉接头处采用电生理记录技术进行。在Ca(2+)或Sr(2+)溶液中,高钾去极化可诱发异步ACh释放增加,这表现为微小终板电位频率(MEPP(f))的出现频率增加。由Ca(2+)介导的MEPP(f)增加概率非常低,且能用泊松分布很好地描述,而由Sr(2+)介导的类似MEPP(f)增加最好用简单二项分布描述。从Sr(2+)溶液中的二项分布可以确定释放的平均概率(p)和可释放ACh量子数(n)的值(其中平均MEPP(f) = np)。在Sr(2+)溶液中,p值与bin宽度和n值均无关,表明n和p都是稳定的。使用Sr(2+)溶液中的简单二项分布计算p值,得到的均值的三阶矩理论值与实验分布无法区分。这些结果与数据的蒙特卡罗模拟相结合,表明空间和时间方差对分析没有可测量的影响。神经冲动诱发的同步ACh释放(终板电位,EPPs)在Ca(2+)和Sr(2+)溶液中均遵循简单二项分布。与Sr(2+)相比,在Ca(2+)中,较低的p值和较高的n值产生了相似的同步ACh释放平均水平(m,其中m = np)。统计分析表明在神经递质释放的最后阶段存在两个不同的Ca(2+)依赖性步骤。根据以下方面对结果进行了讨论:(i)量子神经递质释放的统计模型,(ii)Sr(2+)作为诱发ACh释放的部分激动剂的作用,以及(iii)可能代表Ca(2+)和Sr(2+)敏感性位点的特定位置。

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