连接器
化学
立体化学
药物发现
计算生物学
组合化学
BRD4
系列(地层学)
取代基
小脑
结构-活动关系
戒指(化学)
生物化学
烯二炔
血浆蛋白结合
化学型
作者
Oleh Shyshlyk,V. O. Stadnichenko,Oleksandr Diachenko,Iryna Chernysh,Anna Beshtynarska,Diana Alieksieieva,Diana Khotinets,Oleksii Oleksiak,Dmytro Lesyk,Angelina V. Biitseva,Petro Borysko,Volodymyr S. Yarmolchuk,Ganna Tolstanova,Oleksandr O. Grygorenko,Oleksandr O. Grygorenko
摘要
A detailed study of structure-activity relationship (SAR) in a series of phenyl dihydrouracil (PHDU) derivatives as promising chemotypes for protein degrader discovery is reported. Evaluation of cereblon binding for several dozen PHDU-derived building blocks showed that over 20 compounds with various substituents at the phenyl ring showed over 50% displacement of labeled Thalidomide at 10 M. Most potent representatives bearing methyl substituent were used to synthesize 72 PROTACs by conjugating with JQ-1 though a series of linear linkers with or without additional heteroatoms. A series of assays (including binary and ternary complex formation, as well as cell-based BRD4 degradation) allowed establishing SAR trends regarding the linker nature and length. Compounds with (CH₂)₅, (CH₂)₆, and especially (CH₂)₁₁ linkers demonstrated the best results in both BRD4 degradation (DC₅₀ = 16–52 nM) and cell viability assays. The most potent representatives (2/5-Me-PDHU11) can be promising tools for biomedical research.
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