溴尿嘧啶
合作性
化学
三元络合物
泛素
连接器
变构调节
贪婪
合作约束
二价(发动机)
蛋白质水解
生物物理学
细胞生物学
生物化学
结合位点
立体化学
泛素连接酶
血浆蛋白结合
生物
DNA
受体
遗传学
抗原
有机化学
计算机科学
金属
酶
组蛋白
操作系统
基因
作者
Satomi Imaide,Kristin M. Riching,Nikolai Makukhin,Vesna Vetma,Claire Whitworth,Scott J. Hughes,Nicole Trainor,Sarah D. Mahan,Nancy E. Murphy,Angus D. Cowan,Kwok-Ho Chan,Conner Craigon,Andrea Testa,Chiara Maniaci,Marjeta Urh,Danette L. Daniels,Alessio Ciulli
标识
DOI:10.1038/s41589-021-00878-4
摘要
Bivalent proteolysis-targeting chimeras (PROTACs) drive protein degradation by simultaneously binding a target protein and an E3 ligase and forming a productive ternary complex. We hypothesized that increasing binding valency within a PROTAC could enhance degradation. Here, we designed trivalent PROTACs consisting of a bivalent bromo and extra terminal (BET) inhibitor and an E3 ligand tethered via a branched linker. We identified von Hippel-Lindau (VHL)-based SIM1 as a low picomolar BET degrader with preference for bromodomain containing 2 (BRD2). Compared to bivalent PROTACs, SIM1 showed more sustained and higher degradation efficacy, which led to more potent anticancer activity. Mechanistically, SIM1 simultaneously engages with high avidity both BET bromodomains in a cis intramolecular fashion and forms a 1:1:1 ternary complex with VHL, exhibiting positive cooperativity and high cellular stability with prolonged residence time. Collectively, our data along with favorable in vivo pharmacokinetics demonstrate that augmenting the binding valency of proximity-induced modalities can be an enabling strategy for advancing functional outcomes.
科研通智能强力驱动
Strongly Powered by AbleSci AI