化学
内体
选择(遗传算法)
配体(生物化学)
药物发现
DNA
小分子
组合化学
化学图书馆
烯胺
领域(数学分析)
计算生物学
生物化学
机器学习
计算机科学
细胞
受体
数学
数学分析
生物
催化作用
作者
Shabbir Ahmad,Jin Xu,Jianwen A. Feng,Ashley Hutchinson,Hong Zeng,Pegah Ghiabi,Aiping Dong,Paolo A. Centrella,Matthew Clark,Marie-Aude Guié,John P. Guilinger,Anthony D. Keefe,Ying Zhang,Thomas Cerruti,John W. Cuozzo,Moritz von Rechenberg,Albina Bolotokova,Yanjun Li,P. Loppnau,Alma Seitova
标识
DOI:10.1021/acs.jmedchem.3c01471
摘要
WD40 repeat-containing protein 91 (WDR91) regulates early-to-late endosome conversion and plays vital roles in endosome fusion, recycling, and transport. WDR91 was recently identified as a potential host factor for viral infection. We employed DNA-encoded chemical library (DEL) selection against the WDR domain of WDR91, followed by machine learning to predict ligands from the synthetically accessible Enamine REAL database. Screening of predicted compounds identified a WDR91 selective compound 1, with a KD of 6 ± 2 μM by surface plasmon resonance. The co-crystal structure confirmed the binding of 1 to the WDR91 side pocket, in proximity to cysteine 487, which led to the discovery of covalent analogues 18 and 19. The covalent adduct formation for 18 and 19 was confirmed by intact mass liquid chromatography-mass spectrometry. The discovery of 1, 18, and 19, accompanying structure-activity relationship, and the co-crystal structures provide valuable insights for designing potent and selective chemical tools against WDR91 to evaluate its therapeutic potential.
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