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内源性μ和δ阿片受体的异源二聚化诱导配体选择性共靶向溶酶体。

Heteromerization of Endogenous Mu and Delta Opioid Receptors Induces Ligand-Selective Co-Targeting to Lysosomes.

机构信息

Centre National de la Recherche Scientifique, Institut des Neurosciences Cellulaires et Intégratives, Université de Strasbourg, 67000 Strasbourg, France.

Centre National de la Recherche Scientifique, Chronobiotron, 67200 Strasbourg, France.

出版信息

Molecules. 2020 Sep 30;25(19):4493. doi: 10.3390/molecules25194493.

Abstract

Increasing evidence indicates that native mu and delta opioid receptors can associate to form heteromers in discrete brain neuronal circuits. However, little is known about their signaling and trafficking. Using double-fluorescent knock-in mice, we investigated the impact of neuronal co-expression on the internalization profile of mu and delta opioid receptors in primary hippocampal cultures. We established ligand selective mu-delta co-internalization upon activation by 1-[[4-(acetylamino)phenyl]methyl]-4-(2-phenylethyl)-4-piperidinecarboxylic acid, ethyl ester (CYM51010), [d-Ala2, NMe-Phe4, Gly-ol5]enkephalin (DAMGO), and deltorphin II, but not (+)-4-[(α)-α-((2,5)-4-Allyl-2,5-dimethyl-1-piperazinyl)-3-methoxybenzyl]-,-diethylbenzamide (SNC80), morphine, or methadone. Co-internalization was driven by the delta opioid receptor, required an active conformation of both receptors, and led to sorting to the lysosomal compartment. Altogether, our data indicate that mu-delta co-expression, likely through heteromerization, alters the intracellular fate of the mu opioid receptor, which provides a way to fine-tune mu opioid receptor signaling. It also represents an interesting emerging concept for the development of novel therapeutic drugs and strategies.

摘要

越来越多的证据表明,天然的μ和 δ 阿片受体可以在离散的脑神经元回路中形成异源二聚体。然而,它们的信号转导和运输途径知之甚少。使用双荧光敲入小鼠,我们研究了神经元共表达对原代海马培养物中 μ 和 δ 阿片受体内化特征的影响。我们通过 1-[[4-(乙酰氨基)苯基]甲基]-4-(2-苯乙基)-4-哌啶羧酸乙酯(CYM51010)、[d-Ala2, NMe-Phe4, Gly-ol5]脑啡肽(DAMGO)和 δ 啡肽 II 的激活,建立了配体选择性的 μ-δ 共内化,而 (+)-4-[(α)-α-((2,5)-4-烯丙基-2,5-二甲基-1-哌嗪基)-3-甲氧基苄基]-,-二乙基苯甲酰胺(SNC80)、吗啡或美沙酮则没有。共内化由 δ 阿片受体驱动,需要两个受体的活性构象,并导致向溶酶体区室分拣。总之,我们的数据表明,μ-δ 共表达可能通过异源二聚化改变 μ 阿片受体的细胞内命运,这为微调 μ 阿片受体信号提供了一种方法。这也代表了开发新型治疗药物和策略的一个有趣的新兴概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5405/7583997/7f465c23e1c1/molecules-25-04493-g001.jpg

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