基诺美
化学
微管蛋白
抗有丝分裂剂
微管
体内
有丝分裂
激酶
细胞毒性
癌细胞
微管聚合
PLK1
细胞周期蛋白依赖激酶
细胞生物学
细胞周期蛋白B1
癌症研究
生物化学
第1周
细胞
表型筛选
癌症
药理学
细胞周期
细胞生长
细胞周期蛋白B
细胞周期检查点
体外
细胞周期蛋白依赖激酶1
体外毒理学
DNA损伤
作者
Seong-Jin Park,Eun Yeong Kim,Ji-Eun Lee,Ahra Go,Seong-Jin Park,Y N Lee,Taejun Kim,Young Jin Seo,Byul Moon,Jin Hwa Cho,Joo‐Youn Lee,Seon‐Kyu Kim,Jae‐Joong Kim,Jae‐Joong Kim,Yong Hee Cho,Jae‐Joong Kim,Jae‐Joong Kim,Jong Yeon Hwang
标识
DOI:10.1021/acs.jmedchem.6c00337
摘要
Microtubules are critical regulators of mitotic progression and cancer cell proliferation. Herein, we report a novel 2-amino-3-cyanopyridine-based scaffold that functions as a dual inhibitor of tubulin polymerization and cyclin G-associated kinase (GAK). Structure-activity relationship (SAR) optimization identified KMG-732 with nanomolar to submicromolar cytotoxicity across diverse cancer cell lines. Mechanistic investigations revealed that KMG-732 targets the colchicine-binding site, effectively disrupting microtubule assembly and triggering mitotic arrest followed by apoptosis. Beyond its antimitotic effects, KMG-732 significantly attenuates cancer cell migration and invasion. Importantly, KMG-732 displayed favorable pharmacokinetic properties and showed minimal P-glycoprotein-mediated efflux. KMG-732 demonstrated robust antitumor efficacy in both organoids and in vivo xenograft models, maintaining a superior safety profile with reduced systemic toxicity compared to colchicine. Kinome profiling and biochemical assays confirmed selective GAK inhibition, distinguishing KMG-732 from traditional tubulin inhibitors. Collectively, KMG-732 represents a promising dual-targeting antimitotic lead candidate with enhanced efficacy and therapeutic window for cancer treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI