化学
变构调节
谷氨酰胺酶
连接器
谷氨酰胺
结构-活动关系
立体化学
小分子
癌细胞
酶
细胞内
生物化学
A549电池
克拉斯
体外
癌症
氨基酸
突变
基因
生物
遗传学
计算机科学
操作系统
作者
Eun Ji Lee,Krishna Babu Duggirala,Yujin Lee,Mi Ran Yun,Jiyoon Jang,Rajath Cyriac,Myoung Eun Jung,Gildon Choi,Chong Hak Chae,Byoung Chul Cho,Kwang‐Ho Lee
标识
DOI:10.1016/j.bmcl.2022.128956
摘要
Glutamine-addicted cancer metabolism is recently recognized as novel cancer target especially for KRAS and KEAP1 co-occurring mutations. Selective glutaminase1 (GLS1) inhibition was reported using BPTES which has novel mode of allosteric inhibition. However, BPTES is a highly hydrophobic and symmetric molecule with very poor solubility which results in suboptimal pharmacokinetic parameters and hinders its further development. As an ongoing effort to identify more drug-like GLS1 inhibitors via systematic structure - activity relationship (SAR) analysis of BPTES analogs, we disclose our novel macrocycles for GLS1 inhibition with conclusive SAR analysis on the core, core linker, and wing linker, respectively. Selected molecules resulted in reduction in intracellular glutamate levels in LR (LDK378-resistant) cells which is consistent to cell viability result. Finally, compounds 13 selectively reduced the growth of A549 and H460 cells which have co-occurring mutations including KRAS and KEAP1.
科研通智能强力驱动
Strongly Powered by AbleSci AI