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首页> 外文期刊>Journal of Medicinal Chemistry >Conformationally Constrained Analogues of Diacylglycerol (DAG). 23. Hydrophobic Ligand-Protein Interactions versus Ligand-Lipid Interactions of DAG-Lactones with Protein Kinase C (PK-C).
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Conformationally Constrained Analogues of Diacylglycerol (DAG). 23. Hydrophobic Ligand-Protein Interactions versus Ligand-Lipid Interactions of DAG-Lactones with Protein Kinase C (PK-C).

机译:构象受限的二酰基甘油(DAG)类似物。图23.DAG-内酯与蛋白激酶C(PK-C)的疏水配体-蛋白质相互作用与配体-脂质相互作用。

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摘要

The constrained glycerol backbone of DAG-lactones, when combined with highly branched alkyl chains, has engendered a series of DAG-lactone ligands capable of binding protein kinase C (PK-C) with affinities that approximate those of phorbol esters. These branched chains not only appear to be involved in making important hydrophobic contacts with the protein (specific interactions) but also provide adequate lipophilicity to facilitate partitioning into the lipid-rich membrane environment (nonspecific interactions). With the idea of minimizing the nonspecific interactions without reducing lipophilicity, the present work explores the strategy of relocating lipophilicity from the side chain to the lactone core 3, was conceived to allow the new hydrophobic groups on the lactone to engage in specific hydrophobic contacts inside the binding pocket without any expectation of interfering with the hydrogen-bonding network of the DAG-lactone pharmacophore. Surprisingly, both (E)-3 and (Z)-3 showed a significant decrease in binding affinity. From the molecular docking studies performed with the new ligands, we conclude that the binding pocket of the C1 domain of PK-C is sterically restricted and prevents the methyl groups at the C-3 position of the lactone from engaging in productive hydrophobic contacts with the receptor.
机译:当与高度支化的烷基链结合时,DAG-内酯的受约束的甘油主链产生了一系列DAG-内酯配体,它们能够以接近佛波酯的亲和力结合蛋白激酶C(PK-C)。这些支链不仅似乎参与了与蛋白质的重要​​疏水接触(特异性相互作用),而且还提供了足够的亲脂性以促进分配进入富含脂质的膜环境(非特异性相互作用)。以最小化非特异性相互作用而不降低亲脂性的想法,本工作探索了将亲脂性从侧链重新定位到内酯核3的策略,其构想是允许内酯上的新疏水基团与内酯内的特定疏水性接触相结合。结合口袋,而不会干扰DAG-内酯药效团的氢键网络。出人意料的是,(E)-3和(Z)-3均显示出结合亲和力的显着降低。从使用新配体进行的分子对接研究中,我们得出结论,PK-C的C1结构域的结合口袋在空间上受到限制,并防止内酯C-3位置的甲基与C-结构域的疏水性生产接触。受体。

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