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首页> 外文期刊>Journal of the Serbian Chemical Society >Location of the hydrophobic pocket in the binding site of fentanyl analogs in the μ-opioid receptor
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Location of the hydrophobic pocket in the binding site of fentanyl analogs in the μ-opioid receptor

机译:疏水口袋在μ阿片受体中芬太尼类似物的结合位点中的位置

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Fentanyl is a highly potent and clinically widely used narcotic analgesic. The synthesis of its analogs remains a challenge in an attempt to develop highly selective μ-opioid receptor agonists with specific pharmacological properties. In this paper, the use of flexible molecular docking of several specific fentanyl analogs to the μ-opioid receptor model, in order to test the hypothesis that the hydrophobic pocket accommodates alkyl groups at position 3 of the fentanyl skeleton, is described. The stereoisomers of the following compounds were studied: cis- and trans-3-methylfentanyl, 3,3-dimethylfentanyl, cis- and trans-3-ethylfentanyl, cis- and trans-3-propylfentanyl, cis-3-isopropylfentanyl and cis-3-benzylfentanyl. The optimal position and orientation of these fentanyl analogs in the binding pocket of the μ-receptor, explaining their enantiospecific potency, were determined. It was found that the 3-alkyl group of cis-3R,4S and trans-3S,4S stereoisomers of all the active compounds occupies the hydrophobic pocket between TM5, TM6 and TM7, made up of the amino acids Trp318 (TM7), Ile322 (TM7), Ile301 (TM6) and Phe237 (TM5). However, the fact that this hydrophobic pocket can also accommodate the bulky 3-alkyl substituents of the two inactive compounds: cis-3-isopropylfentanyl, and cis-3-benzylfentanyl, indicates that this hydrophobic pocket in the employed receptor model is probably too large. .
机译:芬太尼是一种高效且在临床上广泛使用的麻醉镇痛剂。为了开发具有特定药理特性的高选择性μ阿片受体激动剂,其类似物的合成仍然是一个挑战。在本文中,描述了几种特定的芬太尼类似物与μ阿片受体模型的柔性分子对接的使用,以检验疏水性口袋在芬太尼骨架3位上容纳烷基的假设。研究了以下化合物的立体异构体:顺式和反式3-甲基芬太尼,3,3-二甲基芬太尼,顺式和反式-3-乙基芬太尼,顺式和反式3-丙基芬太尼,顺式-3-异丙基芬太尼和顺式- 3-苄基芬太尼。确定了这些芬太尼类似物在μ受体结合袋中的最佳位置和方向,从而解释了其对映体特异性效能。发现所有活性化合物的顺式-3R,4S和反式3S,4S立体异构体的3-烷基占据了TM5,TM6和TM7之间的疏水口袋,由氨基酸Trp318(TM7),Ile322组成(TM7),Ile301(TM6)和Phe237(TM5)。但是,该疏水口袋也可以容纳两个非活性化合物顺式-3-异丙基芬太尼和顺式-3-苄基芬太尼的庞大的3-烷基取代基这一事实表明,在所采用的受体模型中,该疏水口袋可能太大了。 。 。

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