| Literature DB >> 32930584 |
Robin A Fairhurst1, Thomas Knoepfel1, Nicole Buschmann1, Catherine Leblanc1, Robert Mah1, Milen Todorov1, Pierre Nimsgern1, Sebastien Ripoche1, Michel Niklaus1, Nicolas Warin1, Van Huy Luu1, Mario Madoerin1, Jasmin Wirth1, Diana Graus-Porta1, Andreas Weiss1, Michael Kiffe1, Markus Wartmann1, Jacqueline Kinyamu-Akunda1, Dario Sterker1, Christelle Stamm1, Flavia Adler1, Alexandra Buhles1, Heiko Schadt1, Philippe Couttet1, Jutta Blank1, Inga Galuba1, Jörg Trappe1, Johannes Voshol1, Nils Ostermann1, Chao Zou1, Jörg Berghausen1, Alberto Del Rio Espinola1, Wolfgang Jahnke1, Pascal Furet1.
Abstract
FGF19 signaling through the FGFR4/β-klotho receptor complex has been shown to be a key driver of growth and survival in a subset of hepatocellular carcinomas, making selective FGFR4 inhibition an attractive treatment opportunity. A kinome-wide sequence alignment highlighted a poorly conserved cysteine residue within the FGFR4 ATP-binding site at position 552, two positions beyond the gate-keeper residue. Several strategies for targeting this cysteine to identify FGFR4 selective inhibitor starting points are summarized which made use of both rational and unbiased screening approaches. The optimization of a 2-formylquinoline amide hit series is described in which the aldehyde makes a hemithioacetal reversible-covalent interaction with cysteine 552. Key challenges addressed during the optimization are improving the FGFR4 potency, metabolic stability, and solubility leading ultimately to the highly selective first-in-class clinical candidate roblitinib.Entities:
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Year: 2020 PMID: 32930584 DOI: 10.1021/acs.jmedchem.0c01019
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446