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尽管N端四肽相同,但δ选择性阿片肽皮啡肽和μ选择性杂合肽皮啡肽-[1-4]-强啡肽-[5-7]却呈现出截然不同的构象。二维核磁共振定量分析及分子模拟分析。

The delta-selective opioid peptide dermenkephalin and the mu-selective hybrid peptide dermenkephalin-[1-4]-dermophin-[5-7] display strikingly different conformations despite identical tetrapeptide N-termini. A quantitative 2-D NMR and molecular modeling analysis.

作者信息

Riand J, Baron D, Nicolas P, Benajiba A, Teng Y, Naim M

机构信息

LADIR, CNRS, Thiais, France.

出版信息

J Biomol Struct Dyn. 1999 Dec;17(3):445-60. doi: 10.1080/07391102.1999.10508376.

Abstract

The selective recognition of the aminoterminal binding pharmacophore Tyr-D-Xaa-Phe of the opioid heptapeptide dermorphin, Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2 (DRM)1, and of dermenkephalin, Tyr-D-Met-Phe-His-Leu-Met-Asp-NH2 (DREK), by the mu-opioid receptor and delta-opioid receptor, respectively, depends upon the constitution / conformation of the C-terminal tripeptide. The hybrid peptide DREK-[1-4]-DRM-[5-7] is very potent at, and exquisitely selective for the mu-opioid receptor, and differs only from dermenkephalin by its C-terminal tripeptide. Comparison of the structural features of DREK-[1-4]-DRM-[5-7] and dermenkephalin by nmr analysis and molecular modeling revealed striking differences, as well in the trans (Tyr5 - Pro6) isomer (population 75%) than in the cis isomer.. Whereas the folded C-terminal tail of dermenkephalin influenced the tertiary structure of the N-terminal tetrapeptide and placed the Tyr1 and Phe3 aromatic rings in definite orientations that are best suited for the delta-receptor, there were only weak contacts, as shown by NOE data, between the aminoterminal and carboxyterminal parts of the hybrid peptide. This promoted increased flexibility of the whole backbone and relaxed orientations for the side-chains of Tyr1 and Phe3 that are compatible with the mu-receptor but unsuitable for the delta-receptor. The steric hindrance introduced by Pro6 in DREK-[1-4]-DRM-[5-7], plus the absence of large hydrophobic side-chains in positions 5 and 6 may prevent close contacts between the N-terminal and C-terminal domains and reorientation of the main pharmacophoric elements Tyr1 and Phe3.

摘要

阿片样物质七肽皮啡肽(Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2,DRM)1和脑啡肽(Tyr-D-Met-Phe-His-Leu-Met-Asp-NH2,DREK)的氨基末端结合药效基团Tyr-D-Xaa-Phe分别被μ-阿片受体和δ-阿片受体选择性识别,这取决于C末端三肽的组成/构象。杂合肽DREK-[1-4]-DRM-[5-7]对μ-阿片受体具有很强的活性且具有高度选择性,与脑啡肽的区别仅在于其C末端三肽。通过核磁共振分析和分子模拟对DREK-[1-4]-DRM-[5-7]和脑啡肽的结构特征进行比较,结果显示,反式(Tyr5 - Pro6)异构体(占比75%)和顺式异构体均存在显著差异。脑啡肽折叠的C末端尾巴影响了N末端四肽的三级结构,并使Tyr1和Phe3芳香环处于最适合δ受体的特定方向,而杂合肽的氨基末端和羧基末端部分之间只有微弱的接触,如NOE数据所示。这促进了整个主链的灵活性增加,以及Tyr1和Phe3侧链的取向松弛,这些取向与μ受体兼容,但不适合δ受体。DREK-[1-4]-DRM-[5-7]中Pro6引入的空间位阻,加上第5和第6位缺乏大的疏水侧链,可能会阻止N末端和C末端结构域之间的紧密接触以及主要药效基团Tyr1和Phe3的重新取向。

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