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从牛脑中纯化[3H]氟硝西泮结合的内源性抑制剂。

Purification of endogenous inhibitors of [3H]flunitrazepam binding from bovine brain.

作者信息

Kawasaki H, Itoh M, Nakahara T, Nohtomi A, Fukahori M

机构信息

Department of Neuropsychiatry, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

Neurochem Res. 1991 Nov;16(11):1227-33. doi: 10.1007/BF00966700.

Abstract

Endogenous substances which inhibited the binding of [3H]flunitrazepam ([3H]FNZ) to bovine synaptosomal membranes have been purified from the hot acetic acid extracts of the bovine brain. Three peaks of inhibitory activity were obtained by Sephadex G-10 gel chromatography. Two of the peaks (Peak 2, and Peak 3) which had lower molecular weights than that of peak 1 were identified as inosine and hypoxanthine by TLC methods. Another peak (Peak 1) was further purified to homogeneity using both cation and anion ion-exchange chromatography and the following two-step reversed-phase HPLC. The purified substance inhibited the [3H]FNZ binding dose-dependently and competitively but did not have an effect on the binding of the peripheral-type BZ ligand [3H]Ro 5-4864. It was also shown that the substance was heat-stable and resistant to proteolytic degradation (trypsin, alpha-chymotrypsin, pronase). However, a significant loss of inhibitory activity to [3H]FNZ binding was observed after acid hydrolysis. Molecular weight estimates based on gel filtration methods were less than 500 dalton, and the maximal ultraviolet absorption peak was at 314 nm. These results suggest that this substance is a new endogenous ligand for the central BZ receptor and may play an important role in regulating the GABAergic tone in the central nervous system.

摘要

已从牛脑的热乙酸提取物中纯化出抑制[3H]氟硝西泮([3H]FNZ)与牛突触体膜结合的内源性物质。通过Sephadex G - 10凝胶色谱获得了三个抑制活性峰。通过TLC方法鉴定出分子量低于峰1的两个峰(峰2和峰3)为肌苷和次黄嘌呤。另一个峰(峰1)使用阳离子和阴离子离子交换色谱以及以下两步反相HPLC进一步纯化至同质。纯化后的物质剂量依赖性和竞争性地抑制[3H]FNZ结合,但对外周型BZ配体[3H]Ro 5 - 4864的结合没有影响。还表明该物质热稳定且抗蛋白水解降解(胰蛋白酶、α-胰凝乳蛋白酶、链霉蛋白酶)。然而,酸水解后观察到对[3H]FNZ结合的抑制活性显著丧失。基于凝胶过滤法估计的分子量小于500道尔顿,最大紫外吸收峰在314nm处。这些结果表明该物质是中枢BZ受体的一种新的内源性配体,可能在调节中枢神经系统中的GABA能张力方面发挥重要作用。

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