Login / Signup

Identification of pyrazolopyridazinones as PDEδ inhibitors.

Björn PapkeSandip MurarkaHolger A VogelPablo Martín-GagoMarija KovacevicDina C TruxiusEyad K FansaShehab IsmailGunther ZimmermannKaatje HeineltCarsten Schultz-FademrechtAlaa Al SaabiMatthias BaumannPeter NussbaumerAlfred WittinghoferHerbert WaldmannPhilippe I H Bastiaens
Published in: Nature communications (2016)
The prenyl-binding protein PDEδ is crucial for the plasma membrane localization of prenylated Ras. Recently, we have reported that the small-molecule Deltarasin binds to the prenyl-binding pocket of PDEδ, and impairs Ras enrichment at the plasma membrane, thereby affecting the proliferation of KRas-dependent human pancreatic ductal adenocarcinoma cell lines. Here, using structure-based compound design, we have now identified pyrazolopyridazinones as a novel, unrelated chemotype that binds to the prenyl-binding pocket of PDEδ with high affinity, thereby displacing prenylated Ras proteins in cells. Our results show that the new PDEδ inhibitor, named Deltazinone 1, is highly selective, exhibits less unspecific cytotoxicity than the previously reported Deltarasin and demonstrates a high correlation with the phenotypic effect of PDEδ knockdown in a set of human pancreatic cancer cell lines.
Keyphrases
  • small molecule
  • binding protein
  • endothelial cells
  • wild type
  • induced apoptosis
  • signaling pathway
  • cell cycle arrest
  • transcription factor
  • endoplasmic reticulum stress
  • protein protein
  • cell proliferation