芬太尼及其类似物的构象研究。N -苯基取代基的构象空间

L. Dos̆en‐Mićović, G. Roglic, I. Mićović, M. Ivanovic
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引用次数: 7

摘要

基于分子力学的计算方法,在二面角空间中进行蒙特卡罗类型搜索,应用于7种生理高活性芬太尼类似物的研究,这些芬太尼类似物具有不同的苯基侧链取代基。这些分子构象空间的低能区已经被比较,以建立受体识别的苯基侧链构象,并解释羟基取代基增加芬太尼类似物效力的机制。已经发现苯乙基侧链的延伸构象是芬太尼所有活性类似物的唯一构象。苯基侧链上有烷基取代基的化合物的活性与其疏水性相关。羟基取代基通过降低苯基侧链的柔韧性,减少整体最小构象和受体识别构象之间的能量差以及与受体的特定相互作用来影响效力。
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Conformational study of fentanyl and its analogs.1. Conformational space of the N‐phenethyl substituent
The computational method, based on molecular mechanics, with Monte Carlo type searching in dihedral angle space, was applied to the study of seven physiologically highly active fentanyl analogs, with different substituents in a phenethyl side chain. The low energy regions of the conformational space of these molecules have been compared in an effort to establish the receptor-recognized conformation of a phenethyl side chain, and to explain the mechanisms by which a hydroxyl substituent increases potency of the fentanyl analogs. It has been found that the extended conformation of a phenethyl side chain is the only one available to all the active analogs of fentanyl. Activities of the compounds with alkyl substituents in the phenethyl side chain correlate with their hydrophobicities. A hydroxyl substituent affects potency by reducing the flexibility of the phenethyl side chain, by reducing the energy difference between the global minimum and the receptor-recognized conformation and by specific interactions with the receptor.
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