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小鼠半横膈标本中内源性ATP的刺激依赖性释放、分解及作用:ATP在神经肌肉传递中的可能作用

Stimulation-dependent release, breakdown, and action of endogenous ATP in mouse hemidiaphragm preparation: the possible role of ATP in neuromuscular transmission.

作者信息

Vizi E S, Nitahara K, Sato K, Sperlágh B

机构信息

Department of Pharmacology, Institute of Experimental Medicine, Hungarian Academy of Sciences, P.O. Box 67, H-1450, Budapest, Hungary.

出版信息

J Auton Nerv Syst. 2000 Jul 3;81(1-3):278-84. doi: 10.1016/s0165-1838(00)00129-6.

Abstract

In this study the in vitro mouse phrenic nerve- hemidiaphragm preparation was utilized to study the release and extracellular catabolism of endogenous ATP and its action on the postsynaptic site, i.e. on the contraction force evoked by nerve stimulation. ATP, measured by the luciferin-luciferase assay, was released stimulation-dependently from the mouse hemidiaphragm in response to electrical field stimulation at 10 Hz. Blockade of the Na(+) channel activity by tetrodotoxin inhibited the majority of the release of ATP in response to stimulation, showing that it is related to neuronal activity. The nicotinic receptor antagonists d-tubocurarine, and alpha-bungarotoxin and cooling the bath temperature to 7 degrees C also reduced stimulation-induced ATP outflow, suggesting that nicotinic receptors are responsible for the part of the release of ATP that is released from postsynaptic sites in a carrier-mediated manner. Exogenous ATP (20-500 microM) added to the bath was degraded to ADP and AMP by the action of ectoATPase and ectoATPdiphosphohydrolase; the K(m) and v(max) values of these enzymes were 185.8 microM and 55.16 nmol/min.g respectively. However, the total amount of nucleotides ([ATP+ADP+AMP]) was increased after the addition of ATP, indicating that ATP itself promoted further adenine nucleotide release. Twitch contractions of the rat hemidiaphragm preparation evoked by low frequency electrical stimulation was blocked concentration-dependently by the non-depolarizing muscle relaxants d-tubocurarine and pancuronium. Suramin (100 microM-1 mM) reversed neuromuscular blockade by d-tubocurarine and pancuronium; i.e., it shifted their concentration-response curves to the right Taken together our data, that endogenous ATP is released by stimulation and subsequently catabolized in the hemidiaphragm preparation and that suramin inhibits ecto-ATPase activity could be interpreted as meaning that suramin prolongs the action of endogenous ATP to elicit twitch contraction, which points to a new, undefined role of ATP in neuromuscular transmission. The source of ATP is partly postsynaptic, released from the muscle in response to activation of nicotinic ACh receptors expressed on the muscle.

摘要

在本研究中,利用体外小鼠膈神经-半膈肌标本,研究内源性ATP的释放、细胞外分解代谢及其对突触后位点的作用,即对神经刺激诱发的收缩力的作用。通过荧光素-荧光素酶测定法测得,ATP在10Hz电场刺激下从小鼠半膈肌中呈刺激依赖性释放。河豚毒素对Na(+)通道活性的阻断抑制了刺激引起的大部分ATP释放,表明其与神经元活动有关。烟碱样受体拮抗剂d-筒箭毒碱、α-银环蛇毒素以及将浴温冷却至7℃也减少了刺激诱导的ATP流出,提示烟碱样受体介导了以载体介导方式从突触后位点释放的部分ATP。加入浴中的外源性ATP(20-500μM)在外切ATP酶和外切ATP二磷酸水解酶的作用下降解为ADP和AMP;这些酶的K(m)和v(max)值分别为185.8μM和55.16nmol/min.g。然而,加入ATP后核苷酸总量([ATP+ADP+AMP])增加,表明ATP本身促进了进一步的腺嘌呤核苷酸释放。低频电刺激诱发的大鼠半膈肌标本的抽搐收缩被非去极化肌肉松弛剂d-筒箭毒碱和泮库溴铵浓度依赖性阻断。苏拉明(100μM-1mM)可逆转d-筒箭毒碱和泮库溴铵引起的神经肌肉阻滞;即,它将它们的浓度-反应曲线向右移动。综合我们的数据,内源性ATP通过刺激释放,随后在半膈肌标本中分解代谢以及苏拉明抑制外切ATP酶活性,可以解释为苏拉明延长了内源性ATP引发抽搐收缩的作用,这表明ATP在神经肌肉传递中具有新的、未明确的作用。ATP的来源部分是突触后,由肌肉对肌肉上表达的烟碱样ACh受体激活的反应释放。

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