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ATP可抑制青蛙神经节前神经释放乙酰胆碱,而腺苷则无此作用。

Inhibition of acetylcholine release from preganglionic frog nerves by ATP but not adenosine.

作者信息

Silinsky E M, Ginsborg B L

出版信息

Nature. 1983;305(5932):327-8. doi: 10.1038/305327a0.

Abstract

ATP is known to be released in association with acetylcholine at synapses in the vertebrate peripheral nervous system. Exogenously applied ATP and its derivatives have been shown to reduce the release of acetylcholine, so it has been postulated that ATP has a role in the modulation of transmitter secretion. More recent results have suggested, however, that specific adenosine receptors are responsible for the inhibitory effects of adenosine derivatives on transmitter release, and ATP, if released, must be hydrolysed to adenosine to produce inhibition. The original hypothesis that ATP itself might inhibit acetylcholine secretion would be strengthened if it were found that adenosine is very much less potent than ATP as an inhibitor of ACh secretion. We report here results which show this is the case in sympathetic ganglia.

摘要

已知在脊椎动物外周神经系统的突触处,三磷酸腺苷(ATP)与乙酰胆碱一起释放。已表明外源性应用的ATP及其衍生物可减少乙酰胆碱的释放,因此据推测ATP在递质分泌的调节中起作用。然而,最近的研究结果表明,特定的腺苷受体负责腺苷衍生物对递质释放的抑制作用,并且如果ATP被释放,它必须水解为腺苷才能产生抑制作用。如果发现腺苷作为乙酰胆碱分泌抑制剂的效力远低于ATP,那么ATP本身可能抑制乙酰胆碱分泌的原始假设将得到加强。我们在此报告的结果表明,在交感神经节中情况确实如此。

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