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二肽对大脑中γ-氨基丁酸能神经传递的调节作用。

Modulation of GABAergic neurotransmission in the brain by dipeptides.

作者信息

Varga V, Kontro P, Oja S S

机构信息

Department of Biomedical Sciences, University of Tampere, Finland.

出版信息

Neurochem Res. 1988 Nov;13(11):1027-34. doi: 10.1007/BF00973146.

Abstract

The effects of endogenous and synthetic peptides containing GABA or its analogues on the GABA/benzodiazepine/chloride ionophore complex. GABAB receptor, Cl fluxes, GABA release and GABA uptake were studied using synaptic membranes, crude synaptoneurosomal preparations and slices prepared from the rat and mouse brain. The sodium-independent binding of GABA was strongly inhibited by GABA-histidine, followed by gamma-glutamyl-homotaurine, GABA-glycine and gamma-glutamyl-GABA. The binding of diazepam was slightly enhanced by the same peptides. The peptides alone had no effect on the chloride fluxes, but GABA-histidine, gamma-glutamyl-GABA and GABA-glycine enhanced while gamma-glutamyl-homotaurine and GABA-taurine inhibited GABA-stimulated chloride uptake. GABA-histidine was the most effective displacer of baclofen binding, but gamma-glutamylhomotaurine was entirely ineffective. The uptake of GABA was markedly inhibited in synaptosomal preparations by GABA-histidine, while all other peptides were less effective. gamma-Glutamyl-taurine attenuated but gamma-glutamyl-homotaurine and GABA-glycine enhanced the potassium-stimulated release of GABA. The present actions of GABA-histidine in vitro may be of significance for GABAergic neurotransmission in vivo.

摘要

含γ-氨基丁酸(GABA)或其类似物的内源性和合成肽对GABA/苯二氮䓬/氯离子载体复合物的影响。利用大鼠和小鼠脑制备的突触膜、粗制突触神经体标本和脑片,研究了GABAB受体、氯离子通量、GABA释放和GABA摄取。GABA-组氨酸强烈抑制GABA的非钠依赖性结合,其次是γ-谷氨酰高牛磺酸、GABA-甘氨酸和γ-谷氨酰-GABA。相同的肽略微增强了地西泮的结合。单独的肽对氯离子通量没有影响,但GABA-组氨酸、γ-谷氨酰-GABA和GABA-甘氨酸增强了而γ-谷氨酰高牛磺酸和GABA-牛磺酸抑制了GABA刺激的氯离子摄取。GABA-组氨酸是巴氯芬结合最有效的置换剂,但γ-谷氨酰高牛磺酸完全无效。在突触体标本中,GABA-组氨酸显著抑制GABA的摄取,而所有其他肽的效果较差。γ-谷氨酰-牛磺酸减弱了但γ-谷氨酰高牛磺酸和GABA-甘氨酸增强了钾刺激的GABA释放。GABA-组氨酸在体外的当前作用可能对体内GABA能神经传递具有重要意义。

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