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Design Synthesis and Biological Evaluation of Isoxazole-Based CK1 Inhibitors Modified with Chiral Pyrrolidine Scaffolds

机译:手性吡咯烷骨架修饰的异恶唑基CK1抑制剂的设计合成及生物学评价

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摘要

In this study, we report on the modification of a 3,4-diaryl-isoxazole-based CK1 inhibitor with chiral pyrrolidine scaffolds to develop potent and selective CK1 inhibitors. The pharmacophore of the lead structure was extended towards the ribose pocket of the adenosine triphosphate (ATP) binding site driven by structure-based drug design. For an upscale compatible multigram synthesis of the functionalized pyrrolidine scaffolds, we used a chiral pool synthetic route starting from methionine. Biological evaluation of key compounds in kinase and cellular assays revealed significant effects of the scaffolds towards activity and selectivity, however, the absolute configuration of the chiral moieties only exhibited a limited effect on inhibitory activity. X-ray crystallographic analysis of ligand-CK1δ complexes confirmed the expected binding mode of the 3,4-diaryl-isoxazole inhibitors. Surprisingly, the original compounds underwent spontaneous Pictet-Spengler cyclization with traces of formaldehyde during the co-crystallization process to form highly potent new ligands. Our data suggests chiral “ribose-like” pyrrolidine scaffolds have interesting potential for modifications of pharmacologically active compounds.
机译:在这项研究中,我们报道了用手性吡咯烷骨架修饰3,4-二芳基-异恶唑基CK1抑制剂以开发有效和选择性的CK1抑制剂。铅结构的药效基团向由基于结构的药物设计驱动的三磷酸腺苷(ATP)结合位点的核糖口袋延伸。对于高档兼容的功能化吡咯烷支架的多谱图合成,我们使用了从蛋氨酸开始的手性库合成途径。在激酶和细胞分析中对关键化合物的生物学评估表明,支架对活性和选择性具有显着影响,但是,手性部分的绝对构型仅对抑制活性显示出有限的影响。配体-CK1δ配合物的X射线晶体学分析证实了3,4-二芳基-异恶唑抑制剂的预期结合方式。出乎意料的是,原始化合物在共结晶过程中经历了自发的Pictet-Spengler环化反应,并伴有微量甲醛,以形成高效的新配体。我们的数据表明,手性“核糖样”吡咯烷支架具有潜在的修饰药理活性化合物的潜力。

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