基诺美
化学
生物信息学
激酶
效力
铅化合物
生物化学
蛋白激酶A
酶
选择性
结构-活动关系
药理学
体外
生物
基因
催化作用
作者
Teodor Dimitrov,Cetin Anli,Athina Anastasia Moschopoulou,Thales Kronenberger,Mark Kudolo,Christian Geibel,Martin P. Schwalm,Stefan Knapp,Lars Zender,Michael Förster,Stefan Laufer
标识
DOI:10.1016/j.ejmech.2022.114234
摘要
The ATM kinase is a key molecule regulating DNA damage response and can be targeted resulting in efficient radio- or chemosensitization. Due to the enormous size of this protein and the associated difficulties in obtaining high-quality crystal structures, we sought to develop an accurate in silico model to identify new targeting possibilities. We identified a urea group as the most beneficial chemical anchor point, which could undergo multiple interactions in the aspartate-rich hydrophobic region I of the atypical ATM kinase domain. Based on in silico data, we designed and synthesized a comprehensive set of novel urea-based inhibitors and characterized them in diverse biochemical assays. Using this strategy, we identified inhibitors with subnanomolar potency, which were further evaluated in cellular models, selectivity and early DMPK properties. Finally, the two lead compounds 34 and 39 exhibited subnanomolar cellular activity along with an excellent selectivity profile and favorable metabolic stability.
科研通智能强力驱动
Strongly Powered by AbleSci AI