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放射性配体与肌肉匀浆结合以定量受体和离子通道数量。

Radioligand binding to muscle homogenates to quantify receptor and ion channel numbers.

作者信息

Bambrick L L, Howlett S E, Feng Z P, Gordon T

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

J Pharmacol Methods. 1988 Dec;20(4):313-21. doi: 10.1016/0160-5402(88)90054-x.

Abstract

Quantitation of the number of receptor or ion channel proteins in muscle that may be changed as a result of disease, development, or experimental manipulation can be achieved by radioligand binding assays. The problem of apparent specific binding to filters, which severely distorts these assays, is described. Results show that when techniques are applied to minimize both high nonspecific binding and spurious specific binding to filters, equilibrium and nonequilibrium binding assays can be effectively used to measure binding site densities in muscle homogenates. As no sites are lost during homogenate preparation, changes in binding site density that are not apparent when normalized per mg protein are revealed by normalizing the number of sites either per muscle or by muscle fiber diameter. Thus, the resolution of problems inherent in homogenate binding allows the use of these preparations to compare the plasticity and control of ion channels and receptors under a wide variety of experimental conditions.

摘要

通过放射性配体结合试验可以实现对肌肉中可能因疾病、发育或实验操作而发生变化的受体或离子通道蛋白数量的定量。文中描述了与滤膜的明显特异性结合问题,该问题严重扭曲了这些试验。结果表明,当应用技术将高非特异性结合和与滤膜的虚假特异性结合降至最低时,平衡和非平衡结合试验可有效地用于测量肌肉匀浆中的结合位点密度。由于在匀浆制备过程中没有位点丢失,通过按每块肌肉或肌肉纤维直径对位点数量进行归一化处理,可以揭示每毫克蛋白质归一化时不明显的结合位点密度变化。因此,匀浆结合中固有问题的解决使得可以使用这些制剂来比较各种实验条件下离子通道和受体的可塑性及调控情况。

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