用于抗胆碱能定量受体测定的毒蕈碱受体纯化方法的评价。B部分:溶解受体。

J Smisterová, K Ensing, J de Boer, R A de Zeeuw
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引用次数: 5

摘要

为了定量测定受体,建立了一套包括三组优化的小牛纹状体毒蕈碱受体的三步增溶程序。第一步包括用正己烷萃取p2 -球团,然后用2m NaCl萃取。后者提取了39%的非受体蛋白。得到的小球(nacl小球)中毒蕈碱受体的含量为1.5-1.7倍,与1%洋地黄苷溶解。测定了增溶受体与叔羟基3h -右塞米特(3H-DEX)和叔羟基3h - n -甲基东莨菪碱(3H-NMS)的结合参数。3h -右塞米胺的受体密度为nacl颗粒的43.3%,低于3h - n -甲基东莨菪碱的56.7%。洋地黄苷处理后,对3h - n -甲基东莨菪碱的亲和力保持较高(Kd = 0.645 nM),而对3h -右西米胺的亲和力在增溶后降低(Kd = 8.526 nM)。与亲水性3H-NMS结合使用增溶受体可以增加特异性/非特异性结合的比率,因为与膜结合受体相比,该配体与增溶制剂的非特异性结合较低。上述增溶过程优于直接增溶p2 -微球,因为(a)增溶后的nacl微球3H-NMS的受体密度约为1.7倍,(b)洋地黄苷处理后的p2 -微球Kd降至2.422 nM。然而,关于等离子体对配体结合的影响,两种增溶制剂给出了相似的结果。使用溶解的nacl微球或p2微球可以大大提高血浆样品的定量受体测定。与膜结合受体不同,当使用溶解制剂时,可以将大量血浆(如400微升)添加到检测中,而不会影响3H-DEX结合。
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Evaluation of a purification procedure for the muscarinic receptor for the purpose of quantitative receptor assays of anticholinergics. Part B: The solubilized receptor.

For the purpose of quantitative receptor assays, a three-step solubilization procedure including three optimization sets for muscarinic receptor from calf striatum was developed. The first step includes the extraction of the P2-pellet with n-hexane and consequently with 2 M NaCl. By the latter, 39% of non-receptor proteins was extracted. The resulting pellet (NaCl-pellet), enriched in muscarinic receptors by a factor of 1.5-1.7, was solubilized with 1% digitonin. The binding parameters of the solubilized receptor were determined for the tertiary 3H-dexetimide (3H-DEX) and the quaternary 3H-N-methylscopolamine (3H-NMS). The resulting receptor density measured with 3H-dexetimide was lower (43.3% of that for the NaCl-pellet) than that for 3H-N-methyl-scopolamine (56.7%). The treatment with digitonin preserved the high affinity for 3H-N-methylscopolamine (Kd = 0.645 nM), however the affinity of 3H-dexetimide decreased after solubilization (Kd = 8.526 nM). The use of solubilized receptors in combination with hydrophilic 3H-NMS allows to increase the ratio specific/non-specific binding, since the non-specific binding for this ligand to the solubilized preparation is lower when compared with membrane-bound receptors. The above solubilization procedure was found preferable over directly solubilizing the P2-pellet since (a) the receptor density for 3H-NMS was higher for the solubilized NaCl-pellet by a factor of about 1.7, and (b) the treatment of the P2-pellet with digitonin resulted in a lowering of the Kd to 2.422 nM. However, with respect to the plasma effect on the ligand binding, both solubilized preparations give similar results. The use of the solubilized NaCl-pellet or the P2-pellet can considerably improve the quantitative receptor assays of plasma samples. Unlike the membrane-bound receptor, a high volume of plasma, such as 400 microliters, can be added to the assay without any influence on the 3H-DEX binding when solubilized preparation is used.

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A rapid method for the isolation of genomic DNA from Aspergillus fumigatus. Purification of chlorpromazine-sensitive GTPase from rat cerebral cortex. Evaluation of a purification procedure for the muscarinic receptor for the purpose of quantitative receptor assays of anticholinergics. Part A: The membrane-bound receptor. Evaluation of a purification procedure for the muscarinic receptor for the purpose of quantitative receptor assays of anticholinergics. Part B: The solubilized receptor. Purification and characterization of rat parotid glycosylated, basic and acidic proline-rich proteins.
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