化学
合理设计
生物利用度
天然产物
药理学
细胞周期蛋白依赖激酶
激酶
药代动力学
细胞凋亡
细胞周期
细胞周期检查点
细胞周期进展
细胞生长
MAPK/ERK通路
结构-活动关系
细胞
铅化合物
生物化学
生物活性
CDK抑制剂
p38丝裂原活化蛋白激酶
酶抑制剂
细胞培养
药物设计
作者
Yaoguang Huang,Lianyu Tang,Xiaoyu Shi,Wenwu Liu,Xupeng Yang,Mingyu Wang,Zifeng Guo,Wenjing Li,Xianduo Sun,An‐Hua Wang,Jing‐Ming Jia
标识
DOI:10.1021/acs.jmedchem.5c02206
摘要
CDK4 and CDK9 are key kinases governing cell cycle progression and transcriptional regulation, respectively. Accumulating evidence supports the therapeutic potential of their concurrent inhibition in oncology. Screening of our in-house natural product library identified kushenmin K, a flavonoid with modest CDK inhibitory and antiproliferative activities. A strategy combining scaffold hopping with structure-guided design yielded HS-36, a novel oxazolylflavone derivative, which potently inhibited both CDK4 (IC 50 = 18.9 nM) and CDK9 (IC 50 = 4.2 nM). This dual activity effectively blocked cell cycle progression and triggered apoptosis by downregulating key downstream effectors, translating into potent antiproliferative activity. Notably, it maintained this potent activity even in CDK4/6 inhibitor-resistant cell models. Furthermore, HS-36 possessed an excellent pharmacokinetic profile, including good oral bioavailability ( F = 41.8%), which enabled solid and well-tolerated in vivo antitumor efficacy (TGI = 68.8%) in a MV-4–11 xenograft model. This work not only presents HS-36 as a promising lead compound but also validates our rational approach to optimizing natural product scaffolds.
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