| Literature DB >> 32510788 |
Jaebong Jang1,2, Ciric To3, Dries J H De Clercq1, Eunyoung Park1, Charles M Ponthier1, Bo Hee Shin3, Mierzhati Mushajiang3, Radosław P Nowak1, Eric S Fischer1, Michael J Eck1, Pasi A Jänne3,4, Nathanael S Gray1.
Abstract
Targeting epidermal growth factor receptor (EGFR) through an allosteric mechanism provides a potential therapeutic strategy to overcome drug-resistant EGFR mutations that emerge within the ATP binding site. Here, we develop an allosteric EGFR degrader, DDC-01-163, which can selectively inhibit the proliferation of L858R/T790M (L/T) mutant Ba/F3 cells while leaving wildtype EGFR Ba/F3 cells unaffected. DDC-01-163 is also effective against osimertinib-resistant cells with L/T/C797S and L/T/L718Q EGFR mutations. When combined with an ATP-site EGFR inhibitor, osimertinib, the anti-proliferative activity of DDC-01-163 against L858R/T790M EGFR-Ba/F3 cells is enhanced. Collectively, DDC-01-163 is a promising allosteric EGFR degrader with selective activity against various clinically relevant EGFR mutants as a single agent and when combined with an ATP-site inhibitor. Our data suggests that targeted protein degradation is a promising drug development approach for mutant EGFR.Entities:
Keywords: EGFR; allosteric; combination treatment; degrader; drug-resistant mutation
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Year: 2020 PMID: 32510788 PMCID: PMC7686272 DOI: 10.1002/anie.202003500
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336