Development of Low-Nanomolar Covalent Epoxide Inhibitors of Tubulin Detyrosinating Enzymes VASH1&2

  • J Med Chem. 2025 Sep 11;68(17):18335-18355. doi: 10.1021/acs.jmedchem.5c00980.
Anthony Feral  1  2 Guillaume Marcellin  2 Yoann Lannay  2 Camille Hennebert  1 Yazid Souf  1 Aicha Talha  1 Aline Haetty  3 Matthieu Simon  1 Pascal Verdié  1 Maxime Louet  1 Khaled Hached  2 Muriel Amblard  1 Krzysztof Rogowski  3 Siem van der Laan  2 Lubomir Vezenkov  1
Affiliations
  • 1. IBMM, Université de Montpellier, CNRS, ENSCM, Montpellier 34293, France.
  • 2. MT-act, CRBM, Montpellier 34293, France.
  • 3. IGH, CNRS, Université de Montpellier, Montpellier 34090, France.
Abstract

The development of small molecule inhibitors targeting the set of microtubules' post-translational modifications, also known as the "tubulin code", remains an underexplored area in medicinal chemistry. The recent discovery of the VASH1 and VASH2 Enzymes, which are responsible for tubulin detyrosination─a modification associated with neurodegeneration and cancer─prompted us to develop new molecules that inhibit their activity. In this study, we conducted the first QSAR analysis of VASH proteases. Through rational substrate-based design, we identified our lead compound, LV87, as a potent epoxide-based covalent inhibitor of tubulin detyrosination in cellulo. Specificity assessments against Other cysteine proteases and incubations with nonspecific nucleophiles demonstrated that LV87 selectively targets VASH1/2. Additionally, safety data, serum, and microsome stability tests support the notion that LV87 is a selective and potent inhibitor of tubulin detyrosination, paving the way for further optimization and applications.

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