Hosohata Y, Varga E V, Stropova D, Li X, Knapp R J, Hruby V J, Rice K C, Nagase H, Roeske W R, Yamamura H I
Department of Pharmacology, The University of Arizona, Tucson 85724, USA.
Life Sci. 2001 Apr 6;68(19-20):2233-42. doi: 10.1016/s0024-3205(01)01011-6.
Intrinsic activities of different delta opioid agonists were determined in a [35S]GTPgammaS binding assay using cell membranes from Chinese hamster ovary (CHO) cells stably expressing the wild type (hDOR/CHO) or W284L mutant human delta opioid receptor (W284L/CHO). Agonist binding affinities were regulated more robustly by sodium and guanine nucleotide in W284L/CHO than in hDOR/ CHO cell membranes. The W284L mutation selectively reduced the affinity of SNC 80 while having moderate effect ((-) TAN 67) or no effect (DPDPE) on the affinities of other delta selective agonists. The mutation had opposite effects on the intrinsic activities of agonists belonging to different chemical classes. The effects of the mutation on agonist affinities and potencies were independent from its effects on the intrinsic activities of the agonists. Maximal stimulation of [35S]GTPgammaS binding by SNC 80 was 2-fold higher in W284L mutant cell membranes than in wild type hDOR/CHO cell membranes, despite lower receptor expression levels in the W284L/CHO cells. The binding affinity of SNC 80 however, was significantly reduced (15-fold and 30-fold in the absence or presence of sodium+GDP respectively) in W284L/CHO cell membranes relative to wild type hDOR/CHO membranes. Conversely, the Emax of (-)TAN 67 in the [35S]GTPgammaS binding assay was markedly reduced (0.6-fold of that of the wild type) with only a slight (6-fold) reduction in its binding affinity. The affinity and intrinsic activity of DPDPE on the other hand remained unchanged at the W284L mutant hDOR. The mutation had similar effects on the affinities potencies and intrinsic activities of (-)TAN 67 and SB 219825. The results indicate that delta opioid agonists of different chemical classes use specific conformations for G protein activation.
利用稳定表达野生型(hDOR/CHO)或W284L突变型人δ阿片受体(W284L/CHO)的中国仓鼠卵巢(CHO)细胞膜,通过[35S]GTPγS结合试验测定了不同δ阿片激动剂的内在活性。与hDOR/CHO细胞膜相比,W284L/CHO细胞膜中钠和鸟嘌呤核苷酸对激动剂结合亲和力的调节作用更强。W284L突变选择性降低了SNC 80的亲和力,而对其他δ选择性激动剂的亲和力有中等影响((-)TAN 67)或无影响(DPDPE)。该突变对属于不同化学类别的激动剂的内在活性有相反的影响。突变对激动剂亲和力和效力的影响与其对激动剂内在活性的影响无关。尽管W284L/CHO细胞中受体表达水平较低,但SNC 80对[35S]GTPγS结合的最大刺激在W284L突变细胞膜中比野生型hDOR/CHO细胞膜高2倍。然而,相对于野生型hDOR/CHO膜,W284L/CHO细胞膜中SNC 80的结合亲和力显著降低(分别在无钠+GDP或有钠+GDP存在时降低15倍和30倍)。相反,在[35S]GTPγS结合试验中,(-)TAN 67的Emax显著降低(为野生型的0.6倍),而其结合亲和力仅略有降低(6倍)。另一方面,DPDPE在W284L突变型hDOR上的亲和力和内在活性保持不变。该突变对(-)TAN 67和SB 219825的亲和力、效力和内在活性有类似影响。结果表明,不同化学类别的δ阿片激动剂利用特定构象激活G蛋白。