Development of cell-active BRD4-D1 selective inhibitors to decode the role of BET proteins in LPS-mediated liver inflammation

  • Eur J Med Chem. 2025 Dec 20:304:118519. doi: 10.1016/j.ejmech.2025.118519.
Cole R Scholtz  1 Luke C Doskey  2 Sai Giridhar Sarma Kandanur  1 Nora R Vail  1 Erika R Roderick  1 Elliott J Peterson  3 Zachariah J Hoell  1 Ke Shi  4 Hideki Aihara  4 Enis Kostallari  5 Vijay H Shah  1 Harmeet Malhi  2 William C K Pomerantz  6
Affiliations
  • 1. Department of Chemistry, University of Minnesota, Minneapolis, MN, 55455, United States.
  • 2. Division of Gastroenterology and Hepatology, Mayo Clinic, Rochester, MN, United States.
  • 3. Department of Medicinal Chemistry, University of Minnesota, Minneapolis, MN, 55455, United States.
  • 4. Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, MN, 55455, United States.
  • 5. Division of Gastroenterology and Hepatology, Mayo Clinic, Rochester, MN, United States; Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, MN, United States.
  • 6. Department of Chemistry, University of Minnesota, Minneapolis, MN, 55455, United States. Electronic address: [email protected].
Abstract

The endogenously expressed BET proteins (BRD2, BRD3, BRD4) are upstream clinical targets for anti-inflammatory treatments, where inhibition of the tandem bromodomains (D1 and D2) have proven efficacious in vitro and in vivo towards NF-κB-mediated inflammation. Despite their efficacy, dose-limiting toxicities associated with BET inhibition have limited clinical progression. One strategy to circumvent these dose-limiting toxicities has included domain- or protein-selective inhibition of the BET bromodomains. Based on previously reported 1,2,4-substituted imidazole scaffolds, we characterize and report on next-generation BRD4-D1 selective inhibitors, 39 and 41. Compound 39 is both highly potent and selective towards BRD4-D1 (Ki = 2.9 ± 1.0 nM, >1700-fold over BRD2-D1 via fluorescence anisotropy) over Other BET bromodomains in addition to being cell-active at nanomolar concentrations. We also characterized 39's solubility and cellular activity in addition to its off-target hERG liability (a common cardiovascular risk for drug candidates). An acetylated analogue, 41, had an 80-fold reduced hERG affinity compared to previous BRD4-D1 selective compounds. In the context of liver inflammation, we screened 39 against an LPS-mediated cellular model of liver inflammation. Upon treatment with 39, pro-inflammatory chemokines CXCL1 and CCL2 transcripts were significantly downregulated compared to the control; however, BRD4-D1 selective inhibition remained insufficient to reproduce the anti-inflammatory activity of pan-BET treatment. On a mechanistic level, these data highlight that more than one bromodomain within the BET family may be contributing to CXCL1 and CCL2 expression, where multi-domain inhibition or Other therapeutic modalities may be needed in these contexts to achieve sufficient anti-inflammatory effects.

Keywords
Anti-inflammatory; Bromodomain; Cell-active; Epigenetics; Liver disease.
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