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豚鼠皮层突触体中乙酰胆碱释放与Ca2+摄取及终末内Ca2+浓度的关系

Relation of acetylcholine release to Ca2+ uptake and intraterminal Ca2+ concentration in guinea-pig cortex synaptosomes.

作者信息

Adam-Vizi V, Ashley R H

出版信息

J Neurochem. 1987 Oct;49(4):1013-21. doi: 10.1111/j.1471-4159.1987.tb09988.x.

Abstract

[14C]Acetylcholine (ACh) release and parallel alterations in 45Ca2+ uptake and intrasynaptosomal free CA2+ concentration ([Ca2+]i) were measured in guinea-pig brain cortex synaptosomes. Depolarization by high K+ concentrations caused a rapid transient increase in Ca2+ uptake, terminating within 60 s (rate constant = 0.060 s-1; t1/2 = 11.6 s). This resulted in a rapid increase (within 1 s) in [Ca2+1]i, which then fell to a maintained but still-elevated plateau level (t1/2 for the decline was 15 s). Peaks of [Ca2+]i showed a sigmoidal dependence on depolarization, contrasting with the simple linear dependence of plateau levels of [Ca2+]i. The K+-evoked ACh release also had two phases: a fast initial increase (t1/2 = 11.3 s), which terminated within 60 s, was followed by a slow additional increase during sustained depolarizations of up to 10 min. Depolarization by veratridine led to a slow gradual increase in Ca2+ uptake (t1/2 = 130 s) over a 10-min incubation period, whereas an elevated plateau level of [Ca2+]i was achieved within 2 min (without a rapid peak elevation). The Ca2+-dependent fraction of the veratridine-evoked ACh release correlated with the increase in [Ca2+]i rather than with Ca2+ uptake. Using two different methods of depolarization partially circumvented the time limitations imposed by a buffering Ca2+ indicator and we suggest that, in the main, ACh is released in bursts associated with [Ca2+]i transients.

摘要

在豚鼠脑皮质突触体中测量了[¹⁴C]乙酰胆碱(ACh)释放以及45Ca²⁺摄取和平行的突触体内游离Ca²⁺浓度([Ca²⁺]i)的变化。高钾浓度引起的去极化导致Ca²⁺摄取迅速短暂增加,在60秒内终止(速率常数=0.060 s⁻¹;半衰期=11.6秒)。这导致[Ca²⁺]i迅速增加(在1秒内),然后降至维持但仍升高的平台水平(下降的半衰期为15秒)。[Ca²⁺]i的峰值显示出对去极化的S形依赖性,这与[Ca²⁺]i平台水平的简单线性依赖性形成对比。钾离子诱发的ACh释放也有两个阶段:快速的初始增加(半衰期=11.3秒),在60秒内终止,随后在长达10分钟的持续去极化过程中缓慢额外增加。藜芦碱引起的去极化在10分钟的孵育期内导致Ca²⁺摄取缓慢逐渐增加(半衰期=130秒),而在2分钟内达到[Ca²⁺]i的升高平台水平(没有快速的峰值升高)。藜芦碱诱发的ACh释放中Ca²⁺依赖性部分与[Ca²⁺]i的增加相关,而不是与Ca²⁺摄取相关。使用两种不同的去极化方法部分规避了由缓冲Ca²⁺指示剂施加的时间限制,并且我们认为,主要地,ACh以与[Ca²⁺]i瞬变相关的爆发形式释放。

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