支架蛋白
小分子
药物发现
计算生物学
克拉斯
蛋白质结构
结构生物学
生物物理学
脚手架
血浆蛋白结合
突变体
高分辨率
化学
生物
突变
纳米技术
细胞生物学
生物信息学
材料科学
生物化学
信号转导
计算机科学
数据库
基因
地质学
遥感
作者
Roger Castells‐Graells,Kyle Meador,Mark A. Arbing,M.R. Sawaya,Morgan Gee,Duilio Cascio,Emma S. Gleave,J. Debreczeni,J. Breed,Karoline Leopold,Ankoor Patel,Dushyant Jahagirdar,Bronwyn Lyons,Sriram Subramaniam,Chris Phillips,T.O. Yeates
标识
DOI:10.1073/pnas.2305494120
摘要
Cryoelectron microscopy (Cryo-EM) has enabled structural determination of proteins larger than about 50 kDa, including many intractable by any other method, but it has largely failed for smaller proteins. Here, we obtain structures of small proteins by binding them to a rigid molecular scaffold based on a designed protein cage, revealing atomic details at resolutions reaching 2.9 Å. We apply this system to the key cancer signaling protein KRAS (19 kDa in size), obtaining four structures of oncogenic mutational variants by cryo-EM. Importantly, a structure for the key G12C mutant bound to an inhibitor drug (AMG510) reveals significant conformational differences compared to prior data in the crystalline state. The findings highlight the promise of cryo-EM scaffolds for advancing the design of drug molecules against small therapeutic protein targets in cancer and other human diseases.
科研通智能强力驱动
Strongly Powered by AbleSci AI