连接器
膨胀的
计算机科学
蛋白质水解
泛素连接酶
降级(电信)
化学
计算生物学
材料科学
组合化学
生物物理学
生物化学
生物
泛素
酶
操作系统
基因
复合材料
电信
抗压强度
作者
Charles E. Hendrick,Jeff R. Jorgensen,Charu Chaudhry,Iulia I. Strambeanu,Jean-François Brazeau,Jamie M. Schiffer,Zhicai Shi,Jennifer D. Venable,S. E. Wolkenberg
标识
DOI:10.1021/acsmedchemlett.2c00124
摘要
A platform to accelerate optimization of proteolysis targeting chimeras (PROTACs) has been developed using a direct-to-biology (D2B) approach with a focus on linker effects. A large number of linker analogs-with varying length, polarity, and rigidity-were rapidly prepared and characterized in four cell-based assays by streamlining time-consuming steps in synthesis and purification. The expansive dataset informs on linker structure-activity relationships (SAR) for in-cell E3 ligase target engagement, degradation, permeability, and cell toxicity. Unexpected aspects of linker SAR was discovered, consistent with literature reports on "linkerology", and the method dramatically speeds up empirical optimization. Physicochemical property trends emerged, and the platform has the potential to rapidly expand training sets for more complex prediction models. In-depth validation studies were carried out and confirm the D2B platform is a valuable tool to accelerate PROTAC design-make-test cycles.
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