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阿片δ受体拮抗剂H-Tyr-Tic-Phe-OH和μ受体激动剂H-Tyr-D-Tic-Phe-NH2的理论构象分析

Theoretical conformational analysis of the opioid delta antagonist H-Tyr-Tic-Phe-OH and the mu agonist H-Tyr-D-Tic-Phe-NH2.

作者信息

Wilkes B C, Schiller P W

机构信息

Laboratory of Chemical Biology and Peptide Research, Clinical Research Institute of Montreal, Quebec, Canada.

出版信息

Biopolymers. 1994 Sep;34(9):1213-9. doi: 10.1002/bip.360340909.

Abstract

A molecular mechanics study (grid search and energy minimization) of the highly delta receptor-selective delta opioid antagonist H-Tyr-Tic-Phe-OH (TIP; Tic: tetrahydroisoquinoline-3-carboxylic acid) resulted in four low energy conformers with energies within 2 kcal/mol of that of the lowest energy structure. These four conformers contain trans peptide bonds only and represent compact structures showing various patterns of aromatic ring stacking. The centrally located Tic residue imposes several conformational constraints on the N-terminal dipeptide segment; however, the results of molecular dynamics simulations indicated that this tripeptide still shows some structural flexibility, particularly at the Phe3 residue. Analogous studies performed with the structurally related mu receptor-selective mu agonist H-Tyr-D-Tic-Phe-NH2 resulted in low energy structures that were also compact but showed patterns of ring stacking different from those obtained with TIP. Superimposition of low energy conformers of TIP and H-Tyr-D-Tic-Phe-NH2 revealed that the Phe3 residues of the L-Tic- and the D-Tic peptide were always located on opposite sides of the plane defined by the Tic residue, thus providing an explanation for the distinct activity profiles of the two compounds in structural terms. Attempts to demonstrate spatial overlap between the pharmacophoric moieties of low energy conformers of TIP and the nonpeptide delta antagonist naltrindole were made by superimposing either the Tyr1 and Tic2 aromatic rings and the N-terminal amino group or the Tyr1 and Phe3 aromatic rings and the N-terminal amino group of the peptide with the corresponding aromatic rings and nitrogen atom in the alkaloid structure.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对高度δ受体选择性δ阿片样物质拮抗剂H-Tyr-Tic-Phe-OH(TIP;Tic:四氢异喹啉-3-羧酸)进行的分子力学研究(网格搜索和能量最小化)得到了四个低能量构象异构体,其能量与最低能量结构的能量相差在2千卡/摩尔以内。这四个构象异构体仅含有反式肽键,呈现出紧凑的结构,显示出各种芳香环堆积模式。位于中心的Tic残基对N端二肽段施加了若干构象限制;然而,分子动力学模拟结果表明,该三肽仍表现出一定的结构灵活性,尤其是在Phe3残基处。对结构相关的μ受体选择性μ激动剂H-Tyr-D-Tic-Phe-NH2进行的类似研究得到了低能量结构,这些结构也很紧凑,但显示出与TIP不同的环堆积模式。TIP和H-Tyr-D-Tic-Phe-NH2的低能量构象异构体的叠加显示,L-Tic-和D-Tic肽的Phe3残基总是位于由Tic残基定义的平面的相对两侧,从而从结构角度解释了这两种化合物不同的活性谱。通过将肽的Tyr1和Tic2芳香环以及N端氨基或Tyr1和Phe3芳香环以及N端氨基与生物碱结构中的相应芳香环和氮原子叠加,试图证明TIP低能量构象异构体的药效基团与非肽δ拮抗剂纳曲吲哚之间的空间重叠。(摘要截短于250字)

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