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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Redefining the structure-activity relationships of 2,6-methano-3- benzazocines. Part 9: Synthesis, characterization and molecular modeling of pyridinyl isosteres of N-BPE-8-CAC (1), a high affinity ligand for opioid receptors
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Redefining the structure-activity relationships of 2,6-methano-3- benzazocines. Part 9: Synthesis, characterization and molecular modeling of pyridinyl isosteres of N-BPE-8-CAC (1), a high affinity ligand for opioid receptors

机译:重新定义2,6-甲氨基-3-苯并恶唑的构效关系。第9部分:N-BPE-8-CAC吡啶基等位基因的合成,表征和分子建模(1),阿片受体的高亲和力配体

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Derivatives of the lead compound N-BPE-8-CAC (1) where each CH of the biphenyl group was individually replaced by N were prepared in hopes of identifying high affinity ligands with improved aqueous solubility. Compared to 1, binding affinities of the five possible pyridinyl derivatives for the μ opioid receptor were between threefold lower to fivefold higher with the K i of the most potent compound being 0.064 nM. Docking of 8-CAC (2) into the unliganded binding site of the mouse μ opioid receptor (pdb: 4DKL) revealed that 8-CAC and β-FNA (from 4DKL) make nearly identical interactions with the receptor. However, for 1 and the new pyridinyl derivatives 4-8, binding is not tolerated in the 8-CAC binding mode due to the steric constraints of the large N-substituents. Either an alternative binding mode or rearrangement of the protein to accommodate these modifications may account for their high binding affinity.
机译:制备了铅化合物N-BPE-8-CAC(1)的衍生物,其中联苯基的每个CH分别被N取代,希望鉴定出具有改善的水溶性的高亲和力配体。与1相比,五种可能的吡啶基衍生物对μ阿片受体的结合亲和力低三倍至五倍,而最有力化合物的K i为0.064 nM。将8-CAC(2)对接至小鼠μ阿片受体(pdb:4DKL)的未配体结合位点表明,8-CAC和β-FNA(来自4DKL)与受体的相互作用几乎相同。然而,对于1和新的吡啶基衍生物4-8,由于大的N-取代基的空间约束,在8-CAC结合模式下不容许结合。替代的结合模式或蛋白质的重排以适应这些修饰都可以解释它们的高结合亲和力。

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