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牛血清中存在一种强心苷特异性结合蛋白。

A specific binding protein for cardiac glycosides exists in bovine serum.

作者信息

Antolovic R, Kost H, Mohadjerani M, Linder D, Linder M, Schoner W

机构信息

Institute of Biochemistry and Endocrinology, Faculty of Veterinary Medicine, Justus-Liebig-University Giessen, Frankfurter Strasse 100, D-35392 Giessen, Germany.

出版信息

J Biol Chem. 1998 Jun 26;273(26):16259-64. doi: 10.1074/jbc.273.26.16259.

Abstract

Searching for a binding protein in blood, which may be involved in the specific transport of cardiac glycosides to their receptor sites on the sodium pump, we isolated a cardiac glycoside-binding protein (CGBG) of 26 kDa from the globulin fraction of bovine serum by affinity chromatography and on a ouabain-Sepharose 4B column by a purification factor of 5000. The cardiac glycoside-binding globulin was labeled specifically and covalently by the protein-reactive digoxigenin derivative HDMA (N-hydroxysuccimidyldigoxigenin-3-O-methylcarbonyl-epsilon-+ ++aminocapro ate). Even very high concentrations of other steroids, such as estrogen, testosterone, progesterone, and cortisone, did not prevent HDMA-labeling (at 5 and 100 nM) of CGBG, but the cardenolides ouabain and digoxin or the bufadienolide proscillaridin A did so. CGBG is a homodimer of two 26-kDa subunits forming disulfide bonds, since HDMA labeling of a protein of 53 kDa was observed in SDS-polyacrylamide gel electrophoresis when beta-mercaptoethanol was absent during SDS denaturation. The N-terminal amino acid sequence K-D-V-Y-R-A-P-D-G-T-Q-S-A showed no sequence similarity with proteins recorded in gene and protein sequence data banks. A 90-kDa cytosolic CGBG exists in bovine kidneys and reacts with antibodies against CGBG. Binding of ouabain to the cardiac glycoside-binding globulin was monitored by quenching of intrinsic tryptophan fluorescence. Such studies reveal two negatively cooperative ouabain binding sites with Kd' of 1.52 nM and Kd' = 75 nM and with an interaction factor of 50 using a Koshland-Némethy-Filmer model. The demonstration of a cardiac glycoside-binding globulin in plasma is consistent with the recent finding of endogenous cardiac glycosides in mammals.

摘要

为寻找血液中可能参与强心苷向钠泵受体位点特异性转运的结合蛋白,我们通过亲和层析从牛血清球蛋白组分中,在哇巴因 - 琼脂糖4B柱上分离出一种26 kDa的强心苷结合蛋白(CGBG),纯化因子达5000。强心苷结合球蛋白被蛋白反应性地高辛配基衍生物HDMA(N - 羟基琥珀酰亚胺地高辛配基 - 3 - O - 甲基羰基 - ε - 氨基己酸盐)特异性且共价标记。即便存在非常高浓度的其他类固醇,如雌激素、睾酮、孕酮和可的松,也不会阻止HDMA对CGBG的标记(5 nM和100 nM时),但强心甾类化合物哇巴因和地高辛或蟾毒配基海葱苷A会阻止。CGBG是由两个形成二硫键的26 kDa亚基组成的同二聚体,因为在SDS变性过程中不存在β - 巯基乙醇时,SDS - 聚丙烯酰胺凝胶电泳中观察到了53 kDa蛋白的HDMA标记。其N端氨基酸序列K - D - V - Y - R - A - P - D - G - T - Q - S - A与基因和蛋白质序列数据库中记录的蛋白质无序列相似性。牛肾中存在一种90 kDa的胞质CGBG,可与抗CGBG抗体反应。通过内源性色氨酸荧光猝灭监测哇巴因与强心苷结合球蛋白的结合。此类研究使用Koshland - Némethy - Filmer模型揭示了两个负协同的哇巴因结合位点,Kd'分别为1.52 nM和75 nM,相互作用因子为50。血浆中强心苷结合球蛋白的证明与哺乳动物体内内源性强心苷的最新发现一致。

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