Structural Optimization of Covalent Inhibitors for Deubiquitinase ChlaDUB1 of Chlamydia trachomatis as Antibiotic Agents

  • J Med Chem. 2025 Mar 13;68(5):5400-5425. doi: 10.1021/acs.jmedchem.4c02464.
Thomas Zimmermann  1 Jiachen Feng  2 Simon Fischer  1 Luana Janaína de Campos  2 Felipe Ramos Pinheiro  2 Christoph Sotriffer  1 Martin Conda-Sheridan  2 Michael Decker  1
Affiliations
  • 1. Pharmazeutische und Medizinische Chemie, Institut für Pharmazie und Lebensmittelchemie, Julius-Maximilians-Universität Würzburg (JMU), Am Hubland, 97074 Würzburg, Germany.
  • 2. Department of Pharmaceutical Sciences, College of Pharmacy, University of Nebraska Medical Center, Omaha, Nebraska 68198, United States.
Abstract

The cysteine protease ChlaDUB1 has proven to be a promising new target for antichlamydial therapy. This Deubiquitinase manipulates protein homeostasis of the infected human host cell, concealing the chlamydial Infection. In this study, we optimized a previously identified scaffold of covalently acting ChlaDUB1 inhibitors using a combination of docking, synthesis and in vitro enzymatic screening. This led to a reduction of the inhibitor size while simultaneously improving activity at ChlaDUB1 to 1 μM and enhancing the rate of target inhibition. We identified a hitherto unobserved inhibition mechanism at ChlaDUB1 and narrowed it down to a particular substitution pattern by chemical derivatization. Finally, both antichlamydial activity and cytotoxicity of the lead compounds were determined. Hereby, we present comprehensive structure-activity relationships and detailed kinetic studies that identified a small molecule lead compound for specific antichlamydial therapy, which showed drastically lowered cytotoxicity compared to previously described compounds.

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