沙眼衣原体
病菌
效应器
脱氮酶
细胞内
细胞生物学
细胞凋亡
人类病原体
化学
生物
微生物学
生物化学
病毒学
泛素
基因
作者
Thomas Zimmermann,Jiachen Feng,Luana Janaína de Campos,Lindsey A. Knight,Jan Schlötzer,Yesid A. Ramírez,Kevin Schwickert,Markus Zehe,Thomas B. Adler,Tanja Schirmeister,Caroline Kisker,Christoph Sotriffer,Martin Conda‐Sheridan,Michael Decker
标识
DOI:10.1021/acs.jmedchem.4c00230
摘要
Upon infection by an intracellular pathogen, host cells activate apoptotic pathways to limit pathogen replication. Consequently, efficient proliferation of the obligate intracellular pathogen Chlamydia trachomatis, a major cause of trachoma and sexually transmitted diseases, depends on the suppression of host cell apoptosis. C. trachomatis secretes deubiquitinase ChlaDUB1 into the host cell, leading among other interactions to the stabilization of antiapoptotic proteins and, thus, suppression of host cell apoptosis. Targeting the bacterial effector protein may, therefore, lead to new therapeutic possibilities. To explore the active site of ChlaDUB1, an iterative cycle of computational docking, synthesis, and enzymatic screening was applied with the aim of lead structure development. Hereby, covalent inhibitors were developed, which show enhanced inhibition with a 22-fold increase in IC50 values compared to previous work. Comprehensive insights into the binding prerequisites to ChlaDUB1 are provided, establishing the foundation for an additional specific antichlamydial therapy by small molecules.
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