Discovery of a 53BP1 Small Molecule Antagonist Using a Focused DNA-Encoded Library Screen

Methyl-lysine reader p53 binding protein 1 (53BP1) is a central mediator of DNA break repair and is associated with various human diseases, including cancer. Thus, high-quality 53BP1 chemical probes can aid in further understanding the role of 53BP1 in genome repair pathways. Herein, we utilized foc...

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Veröffentlicht in:Journal of medicinal chemistry 2023-10, Vol.66 (20), p.14133-14149
Hauptverfasser: Shell, Devan J., Foley, Caroline A., Wang, Qinhong, Smith, Chelsea M., Guduru, Shiva K. R., Zeng, Hong, Dong, Aiping, Norris-Drouin, Jacqueline L., Axtman, Matthew, Hardy, P. Brian, Gupta, Gaorav, Halabelian, Levon, Frye, Stephen V., James, Lindsey I., Pearce, Kenneth H.
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Sprache:eng
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Zusammenfassung:Methyl-lysine reader p53 binding protein 1 (53BP1) is a central mediator of DNA break repair and is associated with various human diseases, including cancer. Thus, high-quality 53BP1 chemical probes can aid in further understanding the role of 53BP1 in genome repair pathways. Herein, we utilized focused DNA-encoded library screening to identify the novel hit compound UNC8531, which binds the 53BP1 tandem Tudor domain (TTD) with an IC50 of 0.47 ± 0.09 μM in a TR-FRET assay and K d values of 0.85 ± 0.17 and 0.79 ± 0.52 μM in ITC and SPR, respectively. UNC8531 was cocrystallized with the 53BP1 TTD to guide further optimization efforts, leading to UNC9512. NanoBRET and 53BP1-dependent foci formation experiments confirmed cellular target engagement. These results show that UNC9512 is a best-in-class small molecule 53BP1 antagonist that can aid further studies investigating the role of 53BP1 in DNA repair, gene editing, and oncogenesis.
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.3c01192