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首页> 外文期刊>Biochemical Pharmacology >Integrity of extracellular loop 1 of the human cannabinoid receptor 1 is critical for high-affinity binding of the ligand CP 55,940 but not SR 141716A.
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Integrity of extracellular loop 1 of the human cannabinoid receptor 1 is critical for high-affinity binding of the ligand CP 55,940 but not SR 141716A.

机译:人大麻素受体1的胞外环1的完整性对于配体CP 55,940(而非SR 141716A)的高亲和力结合至关重要。

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摘要

Like other G-protein coupled receptors with hydrophobic ligands, the human cannabinoid receptor 1 (CB1) is thought to bind its ligands within the transmembrane region of the receptor. However, for some of these receptors the extracellular loops (ECs) have also been shown to play a role in ligand recognition and selectivity. We have taken a mutagenesis approach to examine the role of the amino terminus, EC1, and EC3 of CB1 in ligand binding. Eight mutant receptors, each with a dipeptide insertion, were constructed, expressed, and evaluated for binding to the cannabinoid ligands (-)-cis-3[2-hydroxy-4-(1',1'-dimethylheptyl)phenyl]-trans-4-(3-hydroxyprop yl)cyclohexanol (CP 55,940) and N-(piperidin-1-yl)-5-(4-chlorophenyl)-1-(2,4-dichlorophenyl)-4-methyl-1H-p yrazole-3-carboxamide hydrochloride (SR 141716A). Mutants with insertions in the membrane distal region of the amino terminus or EC3 maintained affinity for both ligands. Those with insertions in the membrane proximal region of the amino terminus or EC1 exhibited a loss of affinity for CP 55,940 while retaining wild-type affinity for SR 141716A. Representative mutants were analyzed for agonist-induced inhibition of cyclic AMP accumulation, and the results indicated that G-protein coupling remained intact. Alanine substitution mutants were made to address whether it was the perturbation of the overall structure of the region or the displacement of particular side chains that was responsible for the loss of CP 55,940 binding. We conclude that a structurally intact EC1, but not the comparably short EC3, is essential for high-affinity CP 55,940 binding.
机译:像其他具有疏水性配体的G蛋白偶联受体一样,人类大麻素受体1(CB1)被认为在受体的跨膜区域内结合了其配体。然而,对于这些受体中的某些受体,细胞外环(EC)也已显示在配体识别和选择性中起作用。我们采用了诱变方法来检查CB1的氨基末端,EC1和EC3在配体结合中的作用。八个突变体受体,每个都有一个二肽插入,被构建,表达并评估与大麻素配体(-)-顺-3 [2-羟基-4-(1',1'-二甲基庚基)苯基]-反式的结合-4-(3-羟基丙基)环己醇(CP 55,940)和N-(哌啶-1-基)-5-(4-氯苯基)-1-(2,4-二氯苯基)-4-甲基-1H-p吡唑-3-甲酰胺盐酸盐(SR 141716A)。在氨基末端或EC3的远端膜中插入的突变体保持对两个配体的亲和力。那些在氨基末端或EC1的膜近端区域中插入的多肽表现出对CP 55,940的亲和力下降,同时保留了对SR 141716A的野生型亲和力。分析了代表性突变体对激动剂诱导的环状AMP积累的抑制作用,结果表明G蛋白偶联保持完整。制备丙氨酸取代突变体以解决造成该区域CP 55,940结合丧失的原因是该区域整体结构的扰动还是特定侧链的位移。我们得出结论,结构完整的EC1,而不是相对较短的EC3,对于高亲和力CP 55,940结合至关重要。

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