Adrenergic receptors control frequency-dependent switching of the exocytosis mode between "full-collapse" and "kiss-and-run" in murine motor nerve terminal.

IF 1.3 4区 社会学 Q1 AREA STUDIES Asian Survey Pub Date : 2022-05-01 Epub Date: 2022-02-24 DOI:10.1016/j.lfs.2022.120433
Alexey M Petrov, Guzalia F Zakirjanova, Irina V Kovyazina, Andrei N Tsentsevitsky, Ellya A Bukharaeva
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Abstract

Aims: Neurotransmitter release from the synaptic vesicles can occur through two modes of exocytosis: "full-collapse" or "kiss-and-run". Here we investigated how increasing the nerve activity and pharmacological stimulation of adrenoceptors can influence the mode of exocytosis in the motor nerve terminal.

Methods: Recording of endplate potentials with intracellular microelectrodes was used to estimate acetylcholine release. A fluorescent dye FM1-43 and its quenching with sulforhodamine 101 were utilized to visualize synaptic vesicle recycling.

Key findings: An increase in the frequency of stimulation led to a decrease in the rate of FM1-43 unloading despite the higher number of quanta released. High frequency activity promoted neurotransmitter release via the kiss-and-run mechanism. This was confirmed by experiments utilizing (I) FM1-43 dye quencher, that is able to pass into the synaptic vesicle via fusion pore, and (II) loading of FM1-43 by compensatory endocytosis. Noradrenaline and specific α2-adrenoreceptors agonist, dexmedetomidine, controlled the mode of synaptic vesicle recycling at high frequency activity. Their applications favored neurotransmitter release via full-collapse exocytosis rather than the kiss-and-run pathway.

Significance: At the diaphragm neuromuscular junctions, neuronal commands are translated into contractions necessary for respiration. During stress, an increase in discharge rate of the phrenic nerve shifts the exocytosis from the full-collapse to the kiss-and-run mode. The stress-related molecule, noradrenaline, restricts neurotransmitter release in response to a high frequency activity, and prevents the shift in the mode of exocytosis through α2-adrenoceptor activation. This may be a component of the mechanism that limits overstimulation of the respiratory system during stress.

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肾上腺素能受体控制小鼠运动神经末梢在 "完全崩溃 "和 "亲吻-奔跑 "之间的频率依赖性外渗模式切换
目的:神经递质从突触囊泡中的释放可通过两种外渗模式进行:"完全崩解 "或 "亲吻-奔跑"。在此,我们研究了增加神经活动和药物刺激肾上腺素受体如何影响运动神经末梢的外泌模式:方法:使用细胞内微电极记录终板电位来估计乙酰胆碱的释放。利用荧光染料 FM1-43 及其与磺胺多巴醌 101 的淬灭作用来观察突触囊泡的再循环:主要发现:尽管释放的量子数量较多,但刺激频率的增加会导致 FM1-43 卸载率的下降。高频率活动通过 "亲吻-奔跑 "机制促进了神经递质的释放。利用(I)能够通过融合孔进入突触小泡的 FM1-43 染料淬灭剂和(II)通过补偿性内吞作用加载 FM1-43 的实验证实了这一点。去甲肾上腺素和特异性α2-肾上腺素受体激动剂右美托咪定控制了高频活动下突触小泡的再循环模式。它们的应用有利于神经递质通过全折叠外渗释放,而不是通过亲吻和奔跑途径释放:在膈肌神经肌肉接头处,神经元指令被转化为呼吸所需的收缩。在应激状态下,膈神经的放电率增加会使外分泌从完全收缩模式转变为 "接吻-奔跑 "模式。与应激有关的分子--去甲肾上腺素会限制神经递质在高频率活动下的释放,并通过激活α2-肾上腺素受体阻止外渗模式的转变。这可能是压力期间限制呼吸系统过度刺激机制的一个组成部分。
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来源期刊
Asian Survey
Asian Survey AREA STUDIES-
CiteScore
1.80
自引率
22.20%
发文量
38
期刊介绍: The only academic journal of its kind produced in the United States, Asian Survey provides a comprehensive retrospective of contemporary international relations within South, Southeast, and East Asian nations. As the Asian community’s matrix of activities becomes increasingly complex, it is essential to have a sourcebook for sound analysis of current events, governmental policies, socio-economic development, and financial institutions. In Asian Survey you’ll find that sourcebook. Asian Survey consistently publishes articles by leading American and foreign scholars, whose views supplement and contest meanings disseminated by the media.
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