Department of Neurology and Clinical Neurophysiology, Hannover Medical School, Germany.
Eur J Pharmacol. 2010 Jun 25;636(1-3):59-64. doi: 10.1016/j.ejphar.2010.03.020. Epub 2010 Mar 30.
Glycine receptors are expressed throughout the central nervous system working for inhibitory neurotransmission. Since fluctuations of the blood pH value occur under certain physiological and pathological conditions, we investigated the influence of the extracellular pH on glycine homomeric and heteromeric receptor functions using patch clamp in combination with the fast agonist application technique. Our results demonstrated that both alpha1 homomeric and alpha 1 beta heteromeric glycine receptors were remarkably inhibited under acidic extracellular pH. Under alkaline extracellular pH 8.5, there was also a negative functional effect. Desensitization was accelerated depending on pH and a rebound current was observed at an extremely acidic pH value. In double-pulse experiments on alpha1 homomeric receptors, a more rapid recovery of the glycinergic current was shown at pH 4.5 compared to current induced at a physiological pH of 7.2. Our study provided a potential cause for the impaired function of the glycine receptor channels during pH fluctuations occurring in the central nervous system, especially under pathological conditions such as epileptic seizure or ischaemia.
甘氨酸受体在中枢神经系统中广泛表达,发挥抑制性神经递质的作用。由于在某些生理和病理条件下血液 pH 值会发生波动,因此我们使用膜片钳结合快速激动剂应用技术研究了细胞外 pH 值对甘氨酸同型和异型受体功能的影响。我们的结果表明,在酸性细胞外 pH 值下,α1 同型和α1β异型甘氨酸受体均受到显著抑制。在碱性细胞外 pH 值 8.5 下,也存在负性功能效应。去敏作用随 pH 值而加速,在极酸性 pH 值下观察到反弹电流。在α1 同型受体的双脉冲实验中,与在生理 pH 值 7.2 下诱导的电流相比,在 pH 值 4.5 下甘氨酸能电流的恢复更快。我们的研究为中枢神经系统中 pH 值波动期间甘氨酸受体通道功能障碍提供了一个潜在的原因,尤其是在癫痫发作或缺血等病理条件下。