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Site‐directed disulfide reduction using an affinity reagent: Application on the nicotinic acetylcholine receptor

机译:使用亲和试剂进行定点二硫化物还原:在烟碱乙酰胆碱受体上的应用

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>The aim of this study was to present a new concept of site-directed reduction of disulfide bonds based upon the use of an affinity ligand harbouring a readily oxidizable dithiol. The cysteine bond involved in the acetylcholine binding site of the AChoR was specifically reduced by a carbamylcholine analogue. The ligand, in its oxidized form, was characterized by an affinity constant of 20 μM for the agonist binding site. In its dithiol form, it specifically reduced the disulfide between Cys-192 and Cys-193 on the α-subunits of the nicotinic acetylcholine receptor. This reduction needed 10 times lower concentration when carried out with site-directed reducing agent (ARA) than with DTT, and was highly specific for the α-subunits. The contribution of the carbamylcholine moiety of the site-directed reducing agent was clearly demonstrated in kinetic studies where reduction abilities of ARA, DTT and the methylated analogue of ARA (MeRA) were compared. At the same concentration (20 μM), DTT and MeRA had a 25 times lower initial rate of reduction than ARA. With 200 μM of DTT this initial reduction was still 4 times lower. Furthermore, the use of a maleimido undecagold cluster which specifically labeled the reduced nicotinic receptor opens the way to structural analysis of the agonist binding site by electron microscopy. These results demonstrate the potency of this kind of site-directed reducing agent for structural study of receptors or enzymes involving a disulfide bond in their active site.
机译:>本研究的目的是基于带有易于氧化的二硫醇的亲和配体的使用,提出一种二硫键定点还原的新概念。氨基甲酰胆碱类似物可特异性还原参与AChoR乙酰胆碱结合位点的半胱氨酸键。氧化态的配体的特征是对激动剂结合位点的亲和常数为20 μ。它以二硫醇形式特异性还原烟碱乙酰胆碱受体α亚基上Cys-192和Cys-193之间的二硫键。当使用定点还原剂(ARA)进行还原时,与DTT相比,这种还原所需的浓度要低10倍,并且对α-亚基具有高度特异性。定点还原剂的氨基甲酰胆碱部分的贡献在动力学研究中得到了明确证明,其中比较了ARA,DTT和ARA的甲基化类似物(MeRA)的还原能力。在相同浓度(20 μ M)下,DTT和MeRA的初始还原速率比ARA低25倍。使用200 μ M的DTT时,初始减少量仍然低4倍。此外,使用特别标记还原的烟碱样受体的马来酰亚胺基十一聚体簇为通过电子显微镜对激动剂结合位点进行结构分析开辟了道路。这些结果证明了这种定点还原剂对于在其活性位点涉及二硫键的受体或酶的结构研究的效力。

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    《FEBS Letters》 |1995年第3期|共页
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  • 中图分类 分子生物学;
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