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Induced association of mu opioid (MOP) and type 2 cholecystokinin (CCK2) receptors by novel bivalent ligands

机译:新型二价配体诱导μ阿片类(MOP)和2型胆囊收缩素(CCK2)受体的缔合

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摘要

Both mu opioid (MOP) and type 2 cholecystokinin (CCK2) receptors are present in areas of the central nervous system that are involved in modulation of pain processing. We conducted bioluminescence resonance energy transfer (BRET) studies on COS cells coexpressing MOP and CCK2 receptors to determine whether receptor heterodimerization is involved in such modulation. These studies revealed the absence of constitutive or monovalent ligand-induced heterodimerization. Heterodimerization of MOP and CCK2 receptors therefore is unlikely to be responsible for the opposing effects between morphine and CCK in the CNS. However, association was induced, as indicated by a positive BRET signal, on exposure of the cells to bivalent ligands containing mu-opioid agonist and CCK2 receptor antagonist pharmacophores linked through spacers containing 16 to 22 atoms, but not with a shorter (9-atom) spacer. These studies demonstrate for the first time that an appropriately designed bivalent ligand is capable of inducing association of G protein-coupled receptors. The finding that opioid tolerance studies with these ligands in mice showed no correlation with the BRET data is consistent with the absence of association of MOP and CCK2 receptors in vivo.
机译:mu阿片样物质(MOP) 和2型胆囊收缩素(CCK2)受体均存在于中枢神经系统区域,参与调节疼痛过程。我们对共表达MOP和CCK2受体的COS细胞进行了生物发光共振能量转移(BRET)研究,以确定受体异二聚体是否参与了这种调节。这些研究表明不存在组成性或单价配体诱导的异二聚化。因此,MOP和CCK2受体的异源二聚化不太可能是中枢神经系统中吗啡和CCK之间相反作用的原因。但是,如正BRET信号所示,当细胞暴露于含有mu阿片类激动剂和CCK2受体拮抗剂药效团的二价配体时,会诱导缔合,所述二价配体通过包含16至22个原子的间隔子连接,但不与较短的(9个原子)垫片。这些研究首次证明适当设计的二价配体能够诱导G蛋白偶联受体的缔合。在小鼠体内对这些配体的阿片类药物耐受性研究表明与BRET数据无相关性,这一发现与体内缺乏MOP和CCK2受体相关性是一致的。

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