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甘氨酸和γ-氨基丁酸增强小龙虾神经肌肉接头处抑制性和兴奋性递质量子的释放。

Enhanced release of inhibitory and excitatory transmitter quanta in the crayfish neuromuscular junction by glycine and GABA.

作者信息

Finger W

出版信息

Neurosci Lett. 1982 Dec 23;34(1):33-8. doi: 10.1016/0304-3940(82)90088-x.

Abstract

High concentrations of glycine (greater than or equal to 0.1 mol/l) applied to the bathing medium of voltage-clamped muscle fibres elicited high rates of spontaneous inhibitory miniature currents (sIPSCs) which were identified by means of the noise analysis technique. The rate of spontaneous excitatory miniature currents (sEPSCs) was not raised appreciably in presence of these high concentrations of glycine. Contrary to the effect of glycine, high concentrations of GABA (greater than or equal to 0.1 mol/l) desensitized inhibitory postsynaptic receptors and induced high rates of sEPSCs. When, in addition to GABA, glycine was also applied at high concentrations, the discharge of sEPSCs was suppressed. Moreover, glycine reduced significantly the current noise intensity elicited by activation of excitatory postsynaptic membrane channels with 1.10(-4) mol/l glutamate. The experiments suggest an inhibitory action of glycine on the excitatory receptor--channel complex in the postsynaptic membrane.

摘要

将高浓度甘氨酸(大于或等于0.1摩尔/升)施加到电压钳制的肌肉纤维的浴液中,会引发高频率的自发性抑制性微小电流(sIPSCs),这些电流通过噪声分析技术得以识别。在这些高浓度甘氨酸存在的情况下,自发性兴奋性微小电流(sEPSCs)的频率并未明显升高。与甘氨酸的作用相反,高浓度的GABA(大于或等于0.1摩尔/升)会使抑制性突触后受体脱敏,并诱导高频率的sEPSCs。当除了GABA之外,还施加高浓度甘氨酸时,sEPSCs的发放会受到抑制。此外,甘氨酸显著降低了用1.10(-4)摩尔/升谷氨酸激活兴奋性突触后膜通道所引发的电流噪声强度。这些实验表明甘氨酸对突触后膜中的兴奋性受体-通道复合物具有抑制作用。

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