Department of Pharmaceutical Sciences, School of Pharmacy, University of Pittsburgh, Pittsburgh, PA 15261, USA.
Int Immunopharmacol. 2011 Sep;11(9):1303-10. doi: 10.1016/j.intimp.2011.04.013. Epub 2011 May 1.
W5.43(194), a conserved tryptophan residue among G-protein coupled receptors (GPCRs) and cannabinoid receptors (CB), was examined in the present report for its significance in CB2 receptor ligand binding and adenylyl cyclase (AC) activity. Computer modeling postulates that this site in CB2 may be involved in the affinity of WIN55212-2 and SR144528 through aromatic contacts. In the present study, we reported that a CB2 receptor mutant, W5.43(194)Y, which had a tyrosine (Y) substitution for tryptophan (W), retained the binding affinity for CB agonist CP55940, but reduced binding affinity for CB2 agonist WIN55212-2 and inverse agonist SR144528 by 8-fold and 5-fold, respectively; the CB2 W5.43(194)F and W5.43(194)A mutations significantly affect the binding activities of CP55940, WIN55212-2 and SR144528. Furthermore, we found that agonist-mediated inhibition of the forskolin-induced cAMP production was dramatically diminished in the CB2 mutant W5.43(194)Y, whereas W5.43(194)F and W5.43(194)A mutants resulted in complete elimination of downstream signaling, suggesting that W5.43(194) was essential for the full activation of CB2. These results indicate that both aromatic interaction and hydrogen bonding are involved in ligand binding for the residue W5.43(194), and the mutations of this tryptophan site may affect the conformation of the ligand binding pocket and therefore control the active conformation of the wild type CB2 receptor. W5.43(194)Y/F/A mutations also displayed noticeable enhancement of the constitutive activation probably attributed to the receptor conformational changes resulted from the mutations.
W5.43(194)是 G 蛋白偶联受体 (GPCR) 和大麻素受体 (CB) 中保守的色氨酸残基,本研究旨在探讨该残基在 CB2 受体配体结合和腺苷酸环化酶 (AC) 活性中的作用。计算机建模推测,CB2 中的该位点可能通过芳香族接触参与 WIN55212-2 和 SR144528 的亲和力。本研究报道,CB2 受体突变体 W5.43(194)Y 中的色氨酸 (W) 被酪氨酸 (Y) 取代后,保留了对 CB 激动剂 CP55940 的结合亲和力,但对 CB2 激动剂 WIN55212-2 和反向激动剂 SR144528 的结合亲和力分别降低了 8 倍和 5 倍;CB2 W5.43(194)F 和 W5.43(194)A 突变显著影响 CP55940、WIN55212-2 和 SR144528 的结合活性。此外,我们发现激动剂介导的 forskolin 诱导的 cAMP 产生抑制在 CB2 突变体 W5.43(194)Y 中显著减弱,而 W5.43(194)F 和 W5.43(194)A 突变则导致下游信号完全消除,表明 W5.43(194)对于 CB2 的完全激活是必需的。这些结果表明,芳香族相互作用和氢键都参与了残基 W5.43(194)的配体结合,该色氨酸位点的突变可能影响配体结合口袋的构象,从而控制野生型 CB2 受体的活性构象。W5.43(194)Y/F/A 突变也显示出明显增强的组成型激活,可能归因于突变引起的受体构象变化。