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电压依赖性钙通道纯化的1,4-二氢吡啶受体的立体选择性光亲和标记

Stereoselective photoaffinity labelling of the purified 1,4-dihydropyridine receptor of the voltage-dependent calcium channel.

作者信息

Striessnig J, Moosburger K, Goll A, Ferry D R, Glossmann H

出版信息

Eur J Biochem. 1986 Dec 15;161(3):603-9. doi: 10.1111/j.1432-1033.1986.tb10484.x.

Abstract

The voltage-dependent calcium channel from guinea-pig skeletal muscle T-tubules has been isolated with a rapid, two-step purification procedure. Reversible postlabelling of the channel-linked 1,4-dihydropyridine receptor and stereoselective photolabelling as a novel approach were employed to assess purity. A 135-fold purification to a specific activity of 1311 +/- 194 pmol/mg protein (determined by reversible equilibrium binding with (+)-[3H]PN200-110) was achieved. Three polypeptides of 155 kDa, 65 kDa and 32 kDa were identified in the purified preparation. The 155-kDa band is a glycoprotein. The arylazide photoaffinity probe (-)-[3H]azidopine bound with high affinity to solubilized membranes (Kd = 0.7 +/- 0.2 nM) and highly purified fractions (Kd = 3.1 +/- 2 nM), whereas the optical antipode (+)-azidopine was of much lower affinity. Irradiation of (-)-[3H]azidopine and (+)-[3H]azidopine receptor complexes with ultraviolet light led to preferential incorporation of the (-) enantiomer into the 155-kDa polypeptide in crude solubilized and purified preparations. The pharmacological profile of irreversible labelling of the 155-kDa glycoprotein by (-)-[3H]azidopine is identical to that found in reversible binding experiments. Specific photolabelling of the 155-kDa band by (-)-[3H]azidopine per milligram of protein increases 150-fold upon purification, whereas incorporation into non-specific bands in the crude solubilized material is identical for both, (-) and (+)-[3H]azidopine.

摘要

采用快速两步纯化程序,从豚鼠骨骼肌T小管中分离出电压依赖性钙通道。采用通道连接的1,4 - 二氢吡啶受体的可逆后标记和立体选择性光标记作为一种新方法来评估纯度。实现了135倍的纯化,比活性达到1311±194 pmol/mg蛋白质(通过与(+)-[3H]PN200 - 110的可逆平衡结合测定)。在纯化制剂中鉴定出155 kDa、65 kDa和32 kDa的三种多肽。155 kDa条带是一种糖蛋白。芳基叠氮光亲和探针(-)-[3H]叠氮平与溶解膜(Kd = 0.7±0.2 nM)和高度纯化级分(Kd = 3.1±2 nM)具有高亲和力结合,而光学对映体(+)-叠氮平的亲和力则低得多。用紫外光照射(-)-[3H]叠氮平和(+)-[3H]叠氮平受体复合物导致在粗溶解和纯化制剂中(-)对映体优先掺入155 kDa多肽中。(-)-[3H]叠氮平对155 kDa糖蛋白进行不可逆标记的药理学特征与可逆结合实验中发现的相同。每毫克蛋白质中(-)-[3H]叠氮平对155 kDa条带的特异性光标记在纯化后增加150倍,而在粗溶解材料中掺入非特异性条带的情况对于(-)和(+)-[3H]叠氮平来说是相同的。

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