Lung F D, Meyer J P, Lou B S, Xiang L, Li G, Davis P, DeLeon I A, Yamamura H I, Porreca F, Hruby V J
Department of Chemistry, University of Arizona, Tucson 85721, USA.
J Med Chem. 1996 Jun 21;39(13):2456-60. doi: 10.1021/jm950655o.
Tyrosine1 and phenylalanine4 in dynorphin A (Dyn A) have been reported to be important residues for opioid agonist activity and for potency at kappa receptors. The glycine residues in the 2 and 3 positions of dynorphin A may affect the relative orientation of the aromatic rings in positions 1 and 4, but their flexibility precludes careful analysis. To examine these effects on dynorphin A, we previously have synthesized the linear analogues [D-Ala3]Dyn A(1-11)-NH2 (2) and [Ala3]Dyn A(1-11)-NH2 (3) and reported their biological activities. Analogues 2 and 3 displayed affinities for the central kappa opioid receptor (IC50 = 0.76 and 1.1 nM, respectively) similar to that of Dyn A(1-11)-NH2 (1) (IC50 = 0.58 nM) and greatly enhanced selectivities for kappa vs mu and kappa vs delta receptors (IC50 ratios of 350 and 1300 for 2, and 190 and 660 for 3, respectively). These results suggest that the structure and lipophilicity of the amino acid present in position 3 of Dyn A(1-11)-NH2 as well as the conformational changes they induce in the message sequence of dynorphin have important effects on potency and selectivity for kappa opioid receptors. To further investigate structure-activity relationships involving the residue at the 3 position of Dyn A(1-11)-NH2, a series of Dyn A analogues with aromatic, charged, and aliphatic side chain substitutions at the 3 position was designed, synthesized, and evaluated for their affinities for kappa, mu, and delta opioid receptors. It was found that analogues with lipophilic amino acids at the 3 position of Dyn A(1-11)-NH2 generally displayed higher affinity but similar selectivities for the kappa receptor than analogues with charged residues at the same position. It is suggested that the structural, configurational, and steric/lipophilic effects of amino acids at position 3 of Dyn A(1-11)-NH2 may play an important role in potency and selectivity for the kappa receptor.
据报道,强啡肽A(Dyn A)中的酪氨酸1和苯丙氨酸4是阿片类激动剂活性以及对κ受体亲和力的重要残基。强啡肽A第2和3位的甘氨酸残基可能会影响第1和4位芳香环的相对取向,但其灵活性使得难以进行仔细分析。为了研究这些对强啡肽A的影响,我们之前合成了线性类似物[D - Ala3]Dyn A(1 - 11)-NH2(2)和[Ala3]Dyn A(1 - 11)-NH2(3),并报道了它们的生物活性。类似物2和3对中枢κ阿片受体的亲和力(IC50分别为0.76和1.1 nM)与Dyn A(1 - 11)-NH2(1)(IC50 = 0.58 nM)相似,并且对κ受体与μ受体以及κ受体与δ受体的选择性大大提高(2的IC50比值分别为350和1300,3的IC50比值分别为190和660)。这些结果表明,Dyn A(1 - 11)-NH2第3位存在的氨基酸的结构和亲脂性以及它们在强啡肽信息序列中诱导的构象变化对κ阿片受体的效力和选择性具有重要影响。为了进一步研究涉及Dyn A(1 - 11)-NH2第3位残基的构效关系,设计、合成了一系列在第3位具有芳香族、带电荷和脂肪族侧链取代的Dyn A类似物,并评估了它们对κ、μ和δ阿片受体的亲和力。结果发现,在Dyn A(1 - 11)-NH2第3位具有亲脂性氨基酸的类似物通常对κ受体显示出更高的亲和力,但与在相同位置具有带电荷残基的类似物相比,选择性相似。有人提出,Dyn A(1 - 11)-NH2第3位氨基酸的结构、构型以及空间/亲脂性效应可能在对κ受体的效力和选择性中起重要作用。