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变性和非变性条件下毒蕈碱受体的电泳表征:计算机辅助弗格森图分析

Electrophoretic characterization of muscarinic receptors under denaturating and nondenaturating conditions: computer-assisted Ferguson plot analysis.

作者信息

Repke H, Schmitt M

出版信息

Biochim Biophys Acta. 1987 Jun 15;929(1):62-73. doi: 10.1016/0167-4889(87)90241-2.

Abstract

The physical properties of the covalently labeled [( 3H]propylbenzilycholine mustard) muscarinic acetylcholine receptor from rat brain were studied by sodium dodecyl sulfate-polyacrylamide electrophoresis and computer-assisted Ferguson plot analysis. No proteolytic degradation or dimerization of the ligand binding subunit was found. No clues for different molecular weight forms or anomalous migration of the muscarinic receptor were detected. The weighted regression analysis of Ferguson plots gave an apparent molecular mass of 64-65 kDa. A new method for the electrophoretic separation of native (quinuclidinyl[3H]benzilate labeled) muscarinic receptor-detergent complexes was used for the comparison of wheat germ agglutinin binding, and not lectin binding receptors which were obtained by selective solubilization from porcine striatum. For this purpose, the computer-assisted Ferguson plot analysis is particularly suitable, since it renders possible the statistical assessment of both size and charge differences. Both receptor-detergent complexes were found to differ; statistically significant in their net charge but not in their size. The data support the view that muscarinic receptors from different sources may differ considerably in their glycosylation and that the receptor from porcine striatum can reversibly associate with a low-molecular-mass component which contains sialic acid.

摘要

通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和计算机辅助的弗格森图分析,研究了来自大鼠脑的共价标记的[(3H]丙基苯甲酰胆碱氮芥)毒蕈碱型乙酰胆碱受体的物理性质。未发现配体结合亚基的蛋白水解降解或二聚化。未检测到毒蕈碱受体不同分子量形式或异常迁移的线索。弗格森图的加权回归分析得出表观分子量为64-65 kDa。一种用于电泳分离天然(喹核啶基[3H]苄酯标记)毒蕈碱受体-去污剂复合物的新方法用于比较麦胚凝集素结合,而非从猪纹状体中通过选择性溶解获得的凝集素结合受体。为此,计算机辅助的弗格森图分析特别适用,因为它使得对大小和电荷差异进行统计评估成为可能。发现两种受体-去污剂复合物存在差异;在净电荷上具有统计学显著性差异,但在大小上无差异。这些数据支持以下观点:来自不同来源的毒蕈碱受体在糖基化方面可能有很大差异,并且来自猪纹状体的受体可以与含有唾液酸的低分子量成分可逆结合。

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