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A divergent synthetic pathway for pyrimidine-embedded medium-sized azacycles through an N-quaternizing strategy

机译:通过N季铵化策略嵌入嘧啶的中型氮杂环化合物的合成途径不同

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摘要

Medium-sized heterocycles have recently received significant attention because of their potential roles as modulators of protein–protein interactions, but their molecular diversity and synthetic availability are still inadequate to meet the demand. To address these issues, we developed a new divergent synthetic pathway for skeletally distinct pyrimidine-containing medium-sized azacycles. We introduced N-quaternized pyrimidine-containing polyheterocycles as novel key intermediates for diversity-generating reactions via selective bond cleavages or migrations and prepared 14 discrete core skeletons in an efficient manner. The skeletal diversity of the resulting molecular frameworks was confirmed by chemoinformatic analysis.
机译:中型杂环由于其作为蛋白质间相互作用的调节剂的潜在作用,最近受到了广泛的关注,但它们的分子多样性和合成利用率仍不足以满足需求。为了解决这些问题,我们为骨架不同的含嘧啶的中型氮杂双环化合物开发了一条新的合成途径。我们引入了N-季铵化的含嘧啶的多杂环化合物作为通过选择性键裂解或迁移产生多样性的反应的新型关键中间体,并以有效的方式制备了14个离散的核心骨架。通过化学信息学分析证实了所得分子框架的骨架多样性。

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