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氟哌啶醇对N-甲基-D-天冬氨酸受体的调节作用:NR2B特异性相互作用

Modulation of the N-methyl-D-aspartate receptor by haloperidol: NR2B-specific interactions.

作者信息

Gallagher M J, Huang H, Lynch D R

机构信息

Department of Neurology, University of Pennsylvania School of Medicine and Children's Seashore House, Philadelphia, USA.

出版信息

J Neurochem. 1998 May;70(5):2120-8. doi: 10.1046/j.1471-4159.1998.70052120.x.

DOI:10.1046/j.1471-4159.1998.70052120.x
PMID:9572299
Abstract

The dopaminergic antagonist haloperidol has an eight- to 10-fold higher affinity for NMDA receptors containing the NR2B (epsilon2) subunit, showing the same subunit specificity as ifenprodil, polyamines, and magnesium. In the present study, we have compared the effects of mutations altering polyamine and ifenprodil sensitivity on haloperidol sensitivity of NMDA receptors. As seen for spermidine stimulation, high-affinity haloperidol inhibition is governed by the region around amino acid 198, based on results from chimeric murine NR2A/NR2B (epislon1/epsilon2) receptors. Mutation of epsilon2E201 in this region to asparagine or arginine causes a 10-fold decrease in the ability of haloperidol to inhibit 125I-MK-801 binding. Epsilon2E201 does not govern the interactions of ifenprodil, because all of the mutants at epsilon2E201 exhibited wild-type affinity for ifenprodil. Mutation of epsilon2R337 causes a 400-fold loss in apparent affinity for ifenprodil but does not change the effects of haloperidol. The structural determinants of spermidine stimulation do not perfectly match those for haloperidol inhibition, as mutations of E200 remove haloperidol inhibition but do not alter polyamine stimulation. The present results thus demonstrate that although spermidine, haloperidol, and ifenprodil share subunit selectivity and overlapping pharmacology, they also have specific structural determinants.

摘要

多巴胺能拮抗剂氟哌啶醇对含有NR2B(ε2)亚基的NMDA受体的亲和力比其他受体高8至10倍,显示出与ifenprodil、多胺和镁相同的亚基特异性。在本研究中,我们比较了改变多胺和ifenprodil敏感性的突变对NMDA受体氟哌啶醇敏感性的影响。从亚精胺刺激的情况来看,基于嵌合小鼠NR2A/NR2B(ε1/ε2)受体的结果,高亲和力的氟哌啶醇抑制作用受氨基酸198周围区域的控制。该区域的ε2E201突变为天冬酰胺或精氨酸会导致氟哌啶醇抑制125I-MK-801结合的能力下降10倍。ε2E201并不控制ifenprodil的相互作用,因为ε2E201处的所有突变体对ifenprodil都表现出野生型亲和力。ε2R337的突变导致对ifenprodil的表观亲和力丧失400倍,但不会改变氟哌啶醇的作用。亚精胺刺激的结构决定因素与氟哌啶醇抑制的结构决定因素并不完全匹配,因为E200的突变消除了氟哌啶醇的抑制作用,但不会改变多胺刺激。因此,目前的结果表明,尽管亚精胺、氟哌啶醇和ifenprodil具有亚基选择性和重叠的药理学特性,但它们也有特定的结构决定因素。

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