阿片受体上的巯基。在阿片受体活性位点附近或附近有两个巯基的证据。

Receptor Pub Date : 1992-01-01
D Ofri, E J Simon
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引用次数: 0

摘要

研究了从牛纹状体膜中溶解并重组为脂质体的阿片受体中的巯基。该系统的优点是允许从鸟嘌呤核苷酸结合蛋白的紧密偶联阿片结合位点完全解耦。阿片受体对n -乙基马来酰亚胺(NEM)失活的敏感性,通过[3H]布雷马辛结合测量,无论与G蛋白偶联还是解偶联,都是相似的。此外,不偶联受体的结合可以通过与配体的预孵育来保护NEM的失活,正如之前在偶联的膜结合受体中观察到的那样。这些发现有力地支持了先前的结果,即阿片结合位点上存在巯基。对主要受体类型的检查显示,对NEM的敏感性依次递减:mu > delta > kappa。Mu激动剂结合被发现比拮抗剂结合对NEM更敏感,特别是在NaCl存在的情况下,这影响了两种类型的配体在相反方向的结合,正如之前报道的膜结合受体。在100微米NEM和100毫米NaCl存在下,[3H] (D-Ala2, n -甲基- phe4,Gly-ol)-脑啡肽(DAGO)的结合基本被消除,而[3H]布雷马辛或[3H]纳洛酮的结合几乎不受影响。这些结果最容易解释为在mu结合位点或附近有两个巯基的假设;一种是激动剂(但不是拮抗剂)结合所必需的,另一种是拮抗剂,也许也是激动剂结合所必需的。钠对NEM拮抗剂结合失活的影响维持在解偶联状态,表明这种影响发生在受体蛋白水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sulfhydryl groups on opioid receptors revisited. Evidence for two sulfhydryl groups at or near the active site of the mu opioid receptor.

Sulfhydryl groups were studied in opioid receptors solubilized from bovine striatal membranes and reconstituted into liposomes. This system has the advantage of permitting the complete uncoupling of tightly coupled opioid binding sites from guanine nucleotide binding proteins. Sensitivity of opioid receptors to N-ethylmaleimide (NEM) inactivation, as measured by [3H]bremazocine binding, was similar whether coupled or uncoupled from the G protein. Moreover, the binding of uncoupled receptors could be protected from NEM inactivation by preincubation with a ligand, as previously observed in coupled, membrane-bound receptors. These findings provide strong support of earlier results suggesting the presence of sulfhydryl groups on opioid binding sites. An examination of the major receptor types provided the following decreasing order of sensitivity to NEM: mu > delta > kappa. Mu agonist binding was found to be much more sensitive to NEM than antagonist binding, especially in the presence of NaCl, which affects the binding of the two types of ligands in opposite directions, as previously reported for membrane-bound receptors. At 100 microM NEM in the presence of 100 mM NaCl, [3H] (D-Ala2,N-methyl-Phe4,Gly-ol)-enkephalin (DAGO) binding is essentially eliminated, whereas [3H]bremazocine or [3H]naloxone binding is virtually unaffected. These results are most readily explained by the hypothesis that there are two sulfhydryl groups at or near the mu binding site; one essential for agonist (but not antagonist) binding, the other essential for antagonist and perhaps, also agonist binding. The sodium effect on NEM inactivation of antagonist binding was maintained in the uncoupled state indicating that this effect occurs at the level of the receptor protein.

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