天然产物
衍生化
微管蛋白
生物碱
化学生物学
分子内力
酰化
吲哚试验
组合化学
化学
化学空间
药物发现
计算生物学
立体化学
生物
微管
生物化学
有机化学
高效液相色谱法
催化作用
细胞生物学
作者
Hikaru Aoyama,Caitlin Davies,Jie Liu,Axel Pahl,Jan‐Lukas Kirchhoff,Rebecca Scheel,Sonja Sievers,Carsten Strohmann,Michael Grigalunas,Herbert Waldmann
标识
DOI:10.1002/chem.202303027
摘要
Design strategies that can access natural-product-like chemical space in an efficient manner may facilitate the discovery of biologically relevant compounds. We have employed a divergent intermediate strategy to construct an indole alkaloid-inspired compound collection derived from two different molecular design principles, i.e. biology-oriented synthesis and pseudo-natural products. The divergent intermediate was subjected to acid-catalyzed or newly discovered Sn-mediated conditions to selectively promote intramolecular C- or N-acylation, respectively. After further derivatization, a collection totalling 84 compounds representing four classes was obtained. Morphological profiling via the cell painting assay coupled with a subprofile analysis showed that compounds derived from different design principles have different bioactivity profiles. The subprofile analysis suggested that a pseudo-natural product class is enriched in modulators of tubulin, and subsequent assays led to the identification of compounds that suppress in vitro tubulin polymerization and mitotic progression.
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