Phenotypic Discovery of Triazolo[1,5‑c]quinazolines as a First-In-Class Bone Morphogenetic Protein Amplifier Chemotype

Phenotypic drug discovery (PDD) continues to fuel the research and development pipelines with first-in-class therapeutic modalities, but success rates critically depend on the quality of the underlying model system. Here, we employed a stem cell-based approach for the target-agnostic, yet pathway-ce...

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Veröffentlicht in:Journal of medicinal chemistry 2022-11, Vol.65 (22), p.15263-15281
Hauptverfasser: Wesseler, Fabian, Lohmann, Stefan, Riege, Daniel, Halver, Jonas, Roth, Aileen, Pichlo, Christian, Weber, Sabrina, Takamiya, Masanari, Müller, Eva, Ketzel, Jana, Flegel, Jana, Gihring, Adrian, Rastegar, Sepand, Bertrand, Jessica, Baumann, Ulrich, Knippschild, Uwe, Peifer, Christian, Sievers, Sonja, Waldmann, Herbert, Schade, Dennis
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Sprache:eng
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Zusammenfassung:Phenotypic drug discovery (PDD) continues to fuel the research and development pipelines with first-in-class therapeutic modalities, but success rates critically depend on the quality of the underlying model system. Here, we employed a stem cell-based approach for the target-agnostic, yet pathway-centric discovery of small-molecule cytokine signaling activators to act as morphogens during development and regeneration. Unbiased screening identified triazolo­[1,5-c]­quinazolines as a new-in-class in vitro and in vivo active amplifier of the bone morphogenetic protein (BMP) pathway. Cellular BMP outputs were stimulated via enhanced and sustained availability of BMP-Smad proteins, strictly dependent on a minimal BMP input. Holistic target deconvolution unveiled a unique mechanism of dual targeting of casein kinase 1 and phosphatidyl inositol 3-kinase isoforms as key effectors for efficient amplification of osteogenic BMP signaling. This work underscores the asset of PDD to discover unrecognized polypharmacology signatures, in this case significantly expanding the chemical and druggable space of BMP modulators.
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.2c01199