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小牛丘脑膜中的阿片类物质结合:一种选择性μ1结合测定法。

Opiate binding in calf thalamic membranes: a selective mu 1 binding assay.

作者信息

Clark J A, Houghten R, Pasternak G W

机构信息

Cotzias Laboratory of Neuro-Oncology, Memorial Sloan-Kettering Cancer Center, New York, New York.

出版信息

Mol Pharmacol. 1988 Sep;34(3):308-17.

PMID:2901663
Abstract

In the present study, we examined the binding of [3H][D-Ala2,D-Leu5]enkephalin ([ 3H]DADL) to bovine thalamic membranes. Scatchard plots were linear with a KD of 0.7 nM. However, competition experiments suggested binding heterogeneity. Approximately 20% of [3H]DADL binding was easily inhibited by [D-Pen2,D-Pen5]enkephalin (DPDPE) and was insensitive to morphine, implying labeling of delta receptors. The remaining 80% of binding was quite sensitive to both morphine and [D-Ala2,MePhe4,Gly(ol)5]enkephalin (DAGO) and insensitive to DPDPE, consistent with a mu receptor. However, this binding did not correspond to classical morphine-selective mu receptors. Unlike morphine-selective receptors, this binding had similar affinities for morphine, DAGO, DADL and [D-Ser2,Leu5]enkephalin-Thr6 (DSLET). In addition, it was far more sensitive to naloxonazine's wash-resistant inhibition and magnesium-induced enhancement of binding than either the morphine-selective (mu 2) or delta sites. [3H]DSLET binding yielded results very similar to those using [3H]DADL. In conclusion, approximately 80% of [3H]DADL binding in thalamus corresponds to a mu receptor distinct from the classical morphine-selective site. Based upon the results of our studies, we feel that this binding represents mu 1 receptors. DPDPE (10 nM) can effectively inhibit the binding of [3H]DADL to delta receptors, leaving a relatively homogeneous labeling of mu 1 sites. The availability of this selective binding assay should facilitate additional studies of mu 1 receptors.

摘要

在本研究中,我们检测了[3H][D - 丙氨酸2,D - 亮氨酸5]脑啡肽([3H]DADL)与牛丘脑膜的结合情况。Scatchard图呈线性,解离常数(KD)为0.7 nM。然而,竞争实验表明存在结合异质性。约20%的[3H]DADL结合可被[D - 青霉胺2,D - 青霉胺5]脑啡肽(DPDPE)轻易抑制,且对吗啡不敏感,这意味着标记的是δ受体。其余80%的结合对吗啡和[D - 丙氨酸2,甲基苯丙氨酸4,甘氨酸(醇)5]脑啡肽(DAGO)均相当敏感,对DPDPE不敏感,符合μ受体的特征。然而,这种结合并不对应于经典的吗啡选择性μ受体。与吗啡选择性受体不同,这种结合对吗啡、DAGO、DADL和[D - 丝氨酸2,亮氨酸5]脑啡肽 - 苏氨酸6(DSLET)具有相似的亲和力。此外,与吗啡选择性(μ2)或δ位点相比,它对纳洛酮嗪的耐洗抑制和镁诱导的结合增强更为敏感。[3H]DSLET结合产生的结果与使用[3H]DADL时非常相似。总之,丘脑中约80%的[3H]DADL结合对应于一种与经典吗啡选择性位点不同的μ受体。基于我们的研究结果,我们认为这种结合代表μ1受体。DPDPE(10 nM)可有效抑制[3H]DADL与δ受体的结合,使μ1位点的标记相对均匀。这种选择性结合测定方法的可用性应有助于对μ1受体进行更多研究。

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