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一种用于多巴胺D2受体的光亲和配体:叠氮氯氮平。

A photoaffinity ligand for dopamine D2 receptors: azidoclebopride.

作者信息

Niznik H B, Guan J H, Neumeyer J L, Seeman P

出版信息

Mol Pharmacol. 1985 Feb;27(2):193-9.

PMID:3969068
Abstract

In order to label D2 dopamine receptors selectively and covalently by means of a photosensitive compound, azidoclebopride was synthesized directly from clebopride. The dissociation constant (KD) of clebopride for the D2 dopamine receptor (canine brain striatum) was 1.5 nM, while that for azidoclebopride was 21 nM. The affinities of both clebopride and azidoclebopride were markedly reduced in the absence of sodium chloride. In the presence of ultraviolet light, azidoclebopride inactivated D2 dopamine receptors irreversibly, as indicated by the inability of the receptors to bind [3H]spiperone. Maximal photoinactivation of about 60% of the D2 dopamine receptors occurred at 1 microM azidoclebopride; 30% of the receptors were inactivated at 80 nM azidoclebopride (pseudo-IC50). Dopamine agonists selectively protected the D2 receptors from being inactivated by azidoclebopride, the order of potency being (-)-N-n-propylnorapomorphine greater than apomorphine greater than (+/-)-6,7-dihydroxy-2-aminotetralin greater than (+)-N-n-propylnorapomorphine greater than dopamine greater than noradrenaline greater than serotonin. Similarly, dopaminergic antagonists prevented the photoinactivation of D2 receptors by azidoclebopride with the following order of potency: spiperone greater than (+)-butaclamol greater than haloperidol greater than clebopride greater than (-)-sulpiride greater than (-)-butaclamol. The degree of D2 dopamine receptor photoinduced inactivation by azidoclebopride was not significantly affected by scavengers such as p-aminobenzoic acid and dithiothreitol. Furthermore, irradiation of striatal membranes with a concentration of azidoclebopride sufficient to inactivate dopamine D2 receptors by 60% did not significantly reduce dopamine D1, serotonin (S2), benzodiazepine, alpha 1- or beta-noradrenergic receptors. This study describes the use of a novel and selective photoaffinity ligand for brain dopamine D2 receptors. The molecule, in radiolabeled form, may aid in the molecular characterization of these receptors.

摘要

为了通过一种光敏化合物选择性地、共价地标记D2多巴胺受体,直接从氯氮平合成了叠氮氯氮平。氯氮平对D2多巴胺受体(犬脑纹状体)的解离常数(KD)为1.5 nM,而叠氮氯氮平的解离常数为21 nM。在没有氯化钠的情况下,氯氮平和叠氮氯氮平的亲和力均显著降低。在紫外线照射下,叠氮氯氮平不可逆地使D2多巴胺受体失活,这表现为受体无法结合[3H]螺哌隆。在1 μM叠氮氯氮平浓度下,约60%的D2多巴胺受体发生最大光失活;在80 nM叠氮氯氮平(伪IC50)浓度下,30%的受体失活。多巴胺激动剂选择性地保护D2受体不被叠氮氯氮平失活,效力顺序为(-)-N-正丙基去甲阿扑吗啡>阿扑吗啡>(±)-6,7-二羟基-2-氨基四氢萘>(+)-N-正丙基去甲阿扑吗啡>多巴胺>去甲肾上腺素>5-羟色胺。同样,多巴胺能拮抗剂按以下效力顺序阻止叠氮氯氮平对D2受体的光失活:螺哌隆>(+)-布他拉莫>氟哌啶醇>氯氮平>(-)-舒必利>(-)-布他拉莫。叠氮氯氮平对D2多巴胺受体的光诱导失活程度不受对氨基苯甲酸和二硫苏糖醇等清除剂的显著影响。此外,用足以使多巴胺D2受体失活60%的叠氮氯氮平浓度照射纹状体膜,并未显著降低多巴胺D1、5-羟色胺(S2)、苯二氮卓、α1或β-去甲肾上腺素能受体。本研究描述了一种用于脑多巴胺D2受体的新型选择性光亲和配体的应用。这种放射性标记形式的分子可能有助于这些受体的分子特征研究。

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