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阿片类二酮哌嗪:δ阿片受体拮抗剂药效基团的优化

Opioid diketopiperazines: refinement of the delta opioid antagonist pharmacophore.

作者信息

Bryant S D, Balboni G, Guerrini R, Salvadori S, Tomatis R, Lazarus L H

机构信息

LCBRA, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709, USA.

出版信息

Biol Chem. 1997 Feb;378(2):107-14. doi: 10.1515/bchm.1997.378.2.107.

Abstract

Bioactive models for a delta opioid receptor antagonist are proposed based on the structurally rigid, diketopiperazine containing cyclo 2',6'-dimethyl-L-tyrosyl (Dmt)-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid (Tic). Monte Carlo conformational analysis of c(Dmt-Tic) generated three low energy clusters (I-III) of conformers. The lowest energy conformer representing cluster I superimposed best with the X-ray crystal structures of c(Tyr-Tic), an inactive diketopiperazine with similar framework as c(Dmt-Tic), with H-Tyr-Tic-NH2, a dipeptide of moderate delta opioid affinity and lacking bioactivity, and with H-Tyr-Tic-Phe-Phe-OH (TIPP), a selective and potent delta opioid receptor antagonist. Clusters I and II superimposed best with three different overlays of naltrindole, a potent delta opiate antagonist, and with two other H-Tyr-Tic-NH delta opioid antagonist pharmacophores proposed by Temussi et al. (1994) and Wilkes and Schiller (1995). The 3-dimensional topography of these two clusters of c(Dmt-Tic) conformations may represent bioactive models for interaction of an antagonist at delta opioid receptors. Cluster I conformers exhibited gauche- (- 64 degrees) and gauche+ (53 degrees) orientations of the side chains Dmt and Tic, respectively, while cluster II contained trans (179 degrees) and gauche+ (62 degrees) orientations of those side-chains. Aromatic ring distances were 5.4 A for cluster I conformations and 8.2 A for cluster II structures. Orientation about the peptide bond N-C' was cis (- 5 degrees and 3 degrees) for both clusters, respectively. These structural features may provide optimal alignment of the physicochemical moieties important for delta opioid receptor interaction, such as the hydrophobic methyl groups of Dmt, hydrogen bonding of the dimethyltyrosine hydroxyl group within the receptor pocket and cation-pi interactions involving the aromatic rings of Dmt and Tic, as profiled by the three point attachment hypothesis.

摘要

基于结构刚性的、含有环2',6'-二甲基-L-酪氨酸(Dmt)-1,2,3,4-四氢异喹啉-3-羧酸(Tic)的二酮哌嗪,提出了δ阿片受体拮抗剂的生物活性模型。c(Dmt-Tic)的蒙特卡罗构象分析产生了三个低能量构象簇(I-III)。代表簇I的最低能量构象与c(Tyr-Tic)的X射线晶体结构最佳叠加,c(Tyr-Tic)是一种无活性的二酮哌嗪,其框架与c(Dmt-Tic)相似,与H-Tyr-Tic-NH2(一种具有中等δ阿片亲和力且缺乏生物活性的二肽)以及与H-Tyr-Tic-Phe-Phe-OH(TIPP,一种选择性且强效的δ阿片受体拮抗剂)叠加。簇I和II与强效δ阿片拮抗剂纳曲吲哚的三种不同叠加以及Temussi等人(1994年)和Wilkes与Schiller(1995年)提出的另外两种H-Tyr-Tic-NHδ阿片拮抗剂药效基团最佳叠加。这两组c(Dmt-Tic)构象的三维拓扑结构可能代表了拮抗剂与δ阿片受体相互作用的生物活性模型。簇I构象中,侧链Dmt和Tic分别呈现gauche-(-64度)和gauche+(53度)取向,而簇II中这些侧链的取向为反式(179度)和gauche+(62度)。簇I构象的芳香环距离为5.4 Å,簇II结构的芳香环距离为8.2 Å。两个簇围绕肽键N-C'的取向分别为顺式(-5度和3度)。这些结构特征可能为δ阿片受体相互作用中重要的物理化学部分提供最佳排列,例如Dmt的疏水甲基、受体口袋内二甲基酪氨酸羟基的氢键以及涉及Dmt和Tic芳香环的阳离子-π相互作用,如三点附着假说所描述的那样。

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