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Proc Natl Acad Sci U S A. 1994 Aug 16;91(17):8042-6. doi: 10.1073/pnas.91.17.8042.
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Studies on mu and delta opioid receptor selectivity utilizing chimeric and site-mutagenized receptors.利用嵌合受体和位点诱变受体对μ和δ阿片受体选择性的研究。
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本文引用的文献

1
Cloning and functional comparison of kappa and delta opioid receptors from mouse brain.小鼠脑内κ和δ阿片受体的克隆及功能比较
Proc Natl Acad Sci U S A. 1993 Jul 15;90(14):6736-40. doi: 10.1073/pnas.90.14.6736.
2
Molecular cloning and functional expression of a mu-opioid receptor from rat brain.大鼠脑μ-阿片受体的分子克隆与功能表达
Mol Pharmacol. 1993 Jul;44(1):8-12.
3
Amino-aromatic interaction between histidine 197 of the neurokinin-1 receptor and CP 96345.神经激肽-1受体的组氨酸197与CP 96345之间的氨基-芳香族相互作用。
Nature. 1993 Mar 25;362(6418):350-3. doi: 10.1038/362350a0.
4
A single residue, aspartic acid 95, in the delta opioid receptor specifies selective high affinity agonist binding.δ阿片受体中的单个氨基酸残基天冬氨酸95决定了选择性高亲和力激动剂的结合。
J Biol Chem. 1993 Nov 5;268(31):23055-8.
5
Pharmacological characterization of the cloned kappa-, delta-, and mu-opioid receptors.克隆的κ、δ和μ阿片受体的药理学特性
Mol Pharmacol. 1994 Feb;45(2):330-4.
6
Different binding epitopes on the NK1 receptor for substance P and non-peptide antagonist.P物质和非肽拮抗剂在NK1受体上的不同结合表位
Nature. 1993 Mar 25;362(6418):345-8. doi: 10.1038/362345a0.
7
Conserved aspartic acid residues 79 and 113 of the beta-adrenergic receptor have different roles in receptor function.
J Biol Chem. 1988 Jul 25;263(21):10267-71.
8
Lutropin-choriogonadotropin receptor: an unusual member of the G protein-coupled receptor family.
Science. 1989 Aug 4;245(4917):494-9. doi: 10.1126/science.2502842.
9
The testicular receptor for follicle stimulating hormone: structure and functional expression of cloned cDNA.促卵泡激素的睾丸受体:克隆cDNA的结构与功能表达
Mol Endocrinol. 1990 Apr;4(4):525-30. doi: 10.1210/mend-4-4-525.
10
Cloning of a delta opioid receptor by functional expression.
Science. 1992 Dec 18;258(5090):1952-5. doi: 10.1126/science.1335167.

激动剂和拮抗剂与克隆的κ阿片受体的不同结构域结合。

Agonists and antagonists bind to different domains of the cloned kappa opioid receptor.

作者信息

Kong H, Raynor K, Yano H, Takeda J, Bell G I, Reisine T

机构信息

Department of Pharmacology, University of Pennsylvania School of Medicine, Philadelphia 19104.

出版信息

Proc Natl Acad Sci U S A. 1994 Aug 16;91(17):8042-6. doi: 10.1073/pnas.91.17.8042.

DOI:10.1073/pnas.91.17.8042
PMID:8058754
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC44541/
Abstract

Opium and its derivatives are potent analgesics that can also induce severe side effects, including respiratory depression and addiction. Opioids exert their diverse physiological effects through specific membrane-bound receptors. Three major types of opioid receptors have been described, termed delta, kappa, and mu. The recent molecular cloning of these receptor types opens up the possibility to identify the ligand-binding domains of these receptors. To identify the ligand-binding domains of the kappa and delta receptors, we have expressed in COS-7 cells the cloned mouse delta and kappa receptors and chimeric delta/kappa and kappa/delta receptors in which the NH2 termini have been exchanged. The opioid antagonist naloxone binds potently to wild-type kappa receptor but not to wild-type delta receptor. The kappa/delta chimera bound [3H]naloxone with high affinity. In contrast, the kappa-specific agonist [3H]U-69,593 did not bind to the kappa/delta chimera. These findings indicate that selective agonists and antagonists interact with different recognition sites in the kappa receptor and localize the antagonist-binding domain to the NH2 terminus. Consistent with the results of radioligand-binding studies, the kappa/delta chimera did not mediate kappa-agonist inhibition of cAMP formation. In contrast, the delta/kappa chimera did mediate kappa-agonist inhibition of cAMP formation, but this effect was not blocked by naloxone. Furthermore, a truncated kappa receptor lacking its NH2 terminus was able to mediate agonist inhibition of cAMP accumulation in a naloxone-insensitive manner. This result further indicates that the NH2 terminus of the kappa receptor contains the selective antagonist-binding domain. The ability to dissociate agonist- and antagonist-binding sites will facilitate the development of more specific kappa agonists, which could have analgesic properties devoid of side effects.

摘要

鸦片及其衍生物是强效镇痛药,但也会引发严重的副作用,包括呼吸抑制和成瘾。阿片类药物通过特定的膜结合受体发挥其多样的生理作用。已描述了三种主要类型的阿片受体,分别称为δ、κ和μ受体。这些受体类型最近的分子克隆为鉴定这些受体的配体结合结构域开辟了可能性。为了鉴定κ和δ受体的配体结合结构域,我们在COS-7细胞中表达了克隆的小鼠δ和κ受体以及NH2末端已交换的嵌合δ/κ和κ/δ受体。阿片拮抗剂纳洛酮与野生型κ受体紧密结合,但不与野生型δ受体结合。κ/δ嵌合体以高亲和力结合[3H]纳洛酮。相反,κ特异性激动剂[3H]U-69,593不与κ/δ嵌合体结合。这些发现表明,选择性激动剂和拮抗剂与κ受体中的不同识别位点相互作用,并将拮抗剂结合结构域定位到NH2末端。与放射性配体结合研究的结果一致,κ/δ嵌合体不介导κ激动剂对cAMP形成的抑制作用。相反,δ/κ嵌合体确实介导了κ激动剂对cAMP形成的抑制作用,但这种作用未被纳洛酮阻断。此外,缺乏其NH2末端的截短κ受体能够以纳洛酮不敏感的方式介导激动剂对cAMP积累的抑制作用。这一结果进一步表明,κ受体的NH2末端包含选择性拮抗剂结合结构域。区分激动剂和拮抗剂结合位点的能力将有助于开发更具特异性的κ激动剂,这些激动剂可能具有无副作用的镇痛特性。