化学
泛素
半胱氨酸
泛素连接酶
小分子
蛋白质水解
溴尿嘧啶
生物化学
蛋白质降解
配体(生物化学)
平方毫米
化学生物学
酶
受体
组蛋白
DNA
基因
作者
Roman C. Sarott,Inchul You,Yen-Der Li,Sean T. Toenjes,Katherine A. Donovan,Pooreum Seo,Martha Ordonez,Woong Sub Byun,Muhammad Murtaza Hassan,Franziska Wachter,Edward T. Chouchani,Mikołaj Słabicki,Eric S. Fischer,Benjamin L. Ebert,Stephen M. Hinshaw,Nathanael S. Gray
摘要
Targeted protein degradation relies on small molecules that induce new protein-protein interactions between targets and the cellular protein degradation machinery. Most of these small molecules feature specific ligands for ubiquitin ligases. Recently, the attachment of cysteine-reactive chemical groups to pre-existing small molecule inhibitors has been shown to drive specific target degradation. We demonstrate here that different cysteine-reactive groups can specify target degradation via distinct ubiquitin ligases. By focusing on the bromodomain ligand JQ1, we identify cysteine-reactive functional groups that drive BRD4 degradation by either DCAF16 or DCAF11. Unlike proteolysis-targeting chimeric molecules (PROTACs), the new compounds use a single small molecule ligand with a well-positioned cysteine-reactive group to induce protein degradation. The finding that nearly identical compounds can engage multiple ubiquitination pathways suggests that targeting cellular pathways that search for and eliminate chemically reactive proteins is a feasible avenue for converting existing small molecule drugs into protein degrader molecules.
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