Magedov Igor V, Manpadi Madhuri, Ogasawara Marcia A, Dhawan Adriana S, Rogelj Snezna, Van Slambrouck Severine, Steelant Wim F A, Evdokimov Nikolai M, Uglinskii Pavel Y, Elias Eerik M, Knee Erica J, Tongwa Paul, Antipin Mikhail Yu, Kornienko Alexander
Department of Chemistry, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, USA.
J Med Chem. 2008 Apr 24;51(8):2561-70. doi: 10.1021/jm701499n. Epub 2008 Mar 25.
Pyrano[3,2- c]pyridone and pyrano[3,2- c]quinolone structural motifs are commonly found in alkaloids manifesting diverse biological activities. As part of a program aimed at structural simplification of bioactive natural products utilizing multicomponent synthetic processes, we developed compound libraries based on these privileged heterocyclic scaffolds. The selected library members display low nanomolar antiproliferative activity and induce apoptosis in human cancer cell lines. Mechanistic studies reveal that these compounds induce cell cycle arrest in the G2/M phase and block in vitro tubulin polymerization. Because of the successful clinical use of microtubule-targeting agents, these heterocyclic libraries are expected to provide promising new leads in anticancer drug design.
吡喃并[3,2 - c]吡啶酮和吡喃并[3,2 - c]喹诺酮结构基序常见于具有多种生物活性的生物碱中。作为利用多组分合成方法对生物活性天然产物进行结构简化计划的一部分,我们基于这些具有优势的杂环骨架开发了化合物库。所选库成员表现出低纳摩尔级的抗增殖活性,并能诱导人癌细胞系凋亡。机理研究表明,这些化合物诱导细胞周期阻滞于G2/M期,并阻断体外微管蛋白聚合。鉴于微管靶向剂在临床上的成功应用,这些杂环库有望为抗癌药物设计提供有前景的新先导化合物。