Discovery of a Novel Inhibitor of the Hedgehog Signaling Pathway through Cell-based Compound Discovery and Target Prediction

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

  • Lea Kremer - , Max Planck Institute of Molecular Physiology, Technische Universität (TU) Dortmund (Autor:in)
  • Carsten Schultz-Fademrecht - , Lead Discovery Center GmbH (Autor:in)
  • Matthias Baumann - , Lead Discovery Center GmbH (Autor:in)
  • Peter Habenberger - , Lead Discovery Center GmbH (Autor:in)
  • Axel Choidas - , Lead Discovery Center GmbH (Autor:in)
  • Bert Klebl - , Max Planck Innovation GmbH (Autor:in)
  • Susanne Kordes - , Max Planck Institute for Molecular Biomedicine, Lead Discovery Center GmbH (Autor:in)
  • Hans R. Schöler - , Max Planck Institute for Molecular Biomedicine (Autor:in)
  • Jared Sterneckert - , IPS Zellen und neurodegenerative Erkrankungen (NFoG) (Autor:in)
  • Slava Ziegler - , Max Planck Institute of Molecular Physiology (Autor:in)
  • Gisbert Schneider - , ETH Zurich (Autor:in)
  • Herbert Waldmann - , Max Planck Institute of Molecular Physiology, Technische Universität (TU) Dortmund (Autor:in)

Abstract

Cell-based assays enable monitoring of small-molecule bioactivity in a target-agnostic manner and help uncover new biological mechanisms. Subsequent identification and validation of the small-molecule targets, typically employing proteomics techniques, is very challenging and limited, in particular if the targets are membrane proteins. Herein, we demonstrate that the combination of cell-based bioactive-compound discovery with cheminformatic target prediction may provide an efficient approach to accelerate the process and render target identification and validation more efficient. Using a cell-based assay, we identified the pyrazolo-imidazole smoothib as a new inhibitor of hedgehog (Hh) signaling and an antagonist of the protein smoothened (SMO) with a novel chemotype. Smoothib targets the heptahelical bundle of SMO, prevents its ciliary localization, reduces the expression of Hh target genes, and suppresses the growth of Ptch+/− medulloblastoma cells.

Details

OriginalspracheEnglisch
Seiten (von - bis)13021-13025
Seitenumfang5
FachzeitschriftAngewandte Chemie - International Edition
Jahrgang56
Ausgabenummer42
PublikationsstatusVeröffentlicht - 9 Okt. 2017
Peer-Review-StatusJa

Externe IDs

PubMed 28833911
ORCID /0000-0002-7688-3124/work/142250036

Schlagworte

ASJC Scopus Sachgebiete

Schlagwörter

  • chemoinformatics, hedgehog signaling, inhibitors, target identification, target prediction

Bibliotheksschlagworte