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秀丽隐杆线虫的一种经去污剂增溶的烟碱型乙酰胆碱受体。

A detergent-solubilized nicotinic acetylcholine receptor of Caenorhabditis elegans.

作者信息

Lewis J A, Berberich S

机构信息

Division of Life Sciences, University of Texas, San Antonio 78249.

出版信息

Brain Res Bull. 1992 Nov;29(5):667-74. doi: 10.1016/0361-9230(92)90136-l.

Abstract

We have used a spin column assay to study the detergent-solubilized levamisole receptor, a nicotinic acetylcholine receptor of the nematode Caenorhabditis elegans. The receptor can be successfully solubilized in detergent solutions of Triton X-100, Lubrol PX, or sodium cholate. Centrifugal gel filtration assay using the tritiated ligand [3H]meta-aminolevamisole ([3H]MAL) provides a greater signal and a better signal-to-noise ratio for soluble levamisole receptor binding than either polyethylene glycol precipitation or DEAE filter assay with the same ligand. As for membrane-bound receptor, the detergent-solubilized levamisole receptor consists of more than one affinity state. Detergent solubilization appears to increase the affinity of all states for [3H]MAL (Kd for the highest affinity solubilized [3H]MAL binding state, 41 +/- 5 pM). Data is presented on the equilibrium binding and the association and dissociation reaction rates of the receptor. The similar relative efficacy with which various compounds inhibit specific [3H]MAL binding and deficiencies in solubilizable high affinity specific [3H]MAL binding in two receptor mutants show that the solubilized receptor is the same nicotinic acetylcholine receptor that is detected by assaying membrane-bound specific [3H]MAL binding. The detergent-solubilized levamisole receptor is stable at 0 degree to 4 degrees C, making receptor purification feasible.

摘要

我们使用了一种旋转柱分析法来研究经去污剂增溶的左旋咪唑受体,它是线虫秀丽隐杆线虫的一种烟碱型乙酰胆碱受体。该受体能够成功地在Triton X-100、Lubrol PX或胆酸钠的去污剂溶液中增溶。与使用相同配体的聚乙二醇沉淀法或DEAE过滤分析法相比,使用氚标记的配体[3H]间氨基左旋咪唑([3H]MAL)的离心凝胶过滤分析法为可溶性左旋咪唑受体结合提供了更强的信号和更好的信噪比。至于膜结合受体,经去污剂增溶的左旋咪唑受体由不止一种亲和状态组成。去污剂增溶似乎增加了所有状态对[3H]MAL的亲和力(最高亲和力增溶的[3H]MAL结合状态的解离常数,41±5 pM)。本文给出了该受体的平衡结合以及结合和解离反应速率的数据。各种化合物抑制特异性[3H]MAL结合的相对效力相似,以及两个受体突变体中可增溶的高亲和力特异性[3H]MAL结合的缺陷表明,增溶后的受体与通过检测膜结合特异性[3H]MAL结合所检测到的是同一种烟碱型乙酰胆碱受体。经去污剂增溶的左旋咪唑受体在0℃至4℃下稳定,这使得受体纯化成为可能。

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