Discovery of a Potent Allosteric Kinase Modulator by Combining Computational and Synthetic Methods
The rational design of allosteric kinase modulators is challenging but rewarding. The protein kinase PDK1, which lies at the center of the growth‐factor signaling pathway, possesses an allosteric regulatory site previously validated both in vitro and in cells. ANCHOR.QUERY software was used to disco...
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Veröffentlicht in: | Angewandte Chemie International Edition 2015-11, Vol.54 (47), p.13933-13936 |
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Sprache: | eng |
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Zusammenfassung: | The rational design of allosteric kinase modulators is challenging but rewarding. The protein kinase PDK1, which lies at the center of the growth‐factor signaling pathway, possesses an allosteric regulatory site previously validated both in vitro and in cells. ANCHOR.QUERY software was used to discover a potent allosteric PDK1 kinase modulator. Using a recently published PDK1 compound as a template, several new scaffolds that bind to the allosteric target site were generated and one example was validated. The inhibitor can be synthesized in one step by multicomponent reaction (MCR) chemistry when using the ANCHOR.QUERY approach. Our results are significant because the outlined approach allows rapid and efficient scaffold hopping from known molecules into new easily accessible and biologically active ones. Based on increasing interest in allosteric‐site drug discovery, we foresee many potential applications for this approach.
Piece of cake: Virtual pharmacophore‐based screening of a large multicomponent reaction database followed by one‐step synthesis yielded a potent allosteric modulator of the protein kinase PDK1. In addition to structure–activity relationship studies, a cocrystal structure was solved for the best‐performing compound in complex with PDK1. |
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ISSN: | 1433-7851 1521-3773 |
DOI: | 10.1002/anie.201506310 |