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A Selective Modulator of Peroxisome Proliferator-Activated Receptor γ with an Unprecedented Binding Mode.

Thomas HankeSun-Yee CheungWhitney KiluJan HeeringXiaomin NiViktoria PlanzSimone SchierleGiuseppe FaudoneMarius FriedrichMarek WaniorOliver WerzMaike WindbergsEwgenij ProschakManfred Schubert-ZsilaveczApirat ChaikuadStefan KnappDaniel Merk
Published in: Journal of medicinal chemistry (2020)
The nuclear peroxisome proliferator-activated receptor γ has well-validated therapeutic potential in metabolic, inflammatory, and neurodegenerative pathologies, but its activation is also associated with marked adverse effects and novel modes of PPARγ modulation are required. Here, we report the discovery and profiling of a new PPARγ modulator chemotype endowed with remarkable potency and a distinct binding mode in the orthosteric PPARγ ligand-binding site. Its R-enantiomer evolved as a eutomer regarding PPARγ activation with a high eudysmic ratio. The new PPARγ modulator revealed outstanding selectivity over the PPARα and PPARδ subtypes and did not promote adipogenesis in primary human fibroblasts, discriminating it from established agonists.
Keyphrases
  • insulin resistance
  • fatty acid
  • endothelial cells
  • single cell
  • small molecule
  • oxidative stress
  • binding protein
  • type diabetes
  • high throughput
  • induced pluripotent stem cells
  • pluripotent stem cells