螯合作用
稳定器(航空)
化学
效力
组合化学
配体(生物化学)
药品
天然产物
铅化合物
药物发现
化学生物学
配体效率
立体化学
生物物理学
生物化学
药理学
体外
有机化学
生物
受体
机械工程
工程类
作者
Francesco Bosica,Sebastian A. Andrei,João Filipe Neves,Peter Brandt,Anders Gunnarsson,Isabelle Landrieu,Christian Ottmann,Gavin O’Mahony
标识
DOI:10.1002/chem.202001608
摘要
Protein-protein interactions (PPIs) of 14-3-3 proteins are a model system for studying PPI stabilization. The complex natural product Fusicoccin A stabilizes many 14-3-3 PPIs but is not amenable for use in SAR studies, motivating the search for more drug-like chemical matter. However, drug-like 14-3-3 PPI stabilizers enabling such studies have remained elusive. An X-ray crystal structure of a PPI in complex with an extremely low potency stabilizer uncovered an unexpected non-protein interacting, ligand-chelated Mg2+ leading to the discovery of metal-ion-dependent 14-3-3 PPI stabilization potency. This originates from a novel chelation-controlled bioactive conformation stabilization effect. Metal chelation has been associated with pan-assay interference compounds (PAINS) and frequent hitter behavior, but chelation can evidently also lead to true potency gains and find use as a medicinal chemistry strategy to guide compound optimization. To demonstrate this, we exploited the effect to design the first potent, selective, and drug-like 14-3-3 PPI stabilizers.
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