Ontology highlight
ABSTRACT:
SUBMITTER: Zatreanu D
PROVIDER: S-EPMC8211653 | biostudies-literature | 2021 Jun
REPOSITORIES: biostudies-literature
Zatreanu Diana D Robinson Helen M R HMR Alkhatib Omar O Boursier Marie M Finch Harry H Geo Lerin L Grande Diego D Grinkevich Vera V Heald Robert A RA Langdon Sophie S Majithiya Jayesh J McWhirter Claire C Martin Niall M B NMB Moore Shaun S Neves Joana J Rajendra Eeson E Ranzani Marco M Schaedler Theresia T Stockley Martin M Wiggins Kimberley K Brough Rachel R Sridhar Sandhya S Gulati Aditi A Shao Nan N Badder Luned M LM Novo Daniela D Knight Eleanor G EG Marlow Rebecca R Haider Syed S Callen Elsa E Hewitt Graeme G Schimmel Joost J Prevo Remko R Alli Christina C Ferdinand Amanda A Bell Cameron C Blencowe Peter P Bot Chris C Calder Mathew M Charles Mark M Curry Jayne J Ekwuru Tennyson T Ewings Katherine K Krajewski Wojciech W MacDonald Ellen E McCarron Hollie H Pang Leon L Pedder Chris C Rigoreau Laurent L Swarbrick Martin M Wheatley Ed E Willis Simon S Wong Ai Ching AC Nussenzweig Andre A Tijsterman Marcel M Tutt Andrew A Boulton Simon J SJ Higgins Geoff S GS Pettitt Stephen J SJ Smith Graeme C M GCM Lord Christopher J CJ
Nature communications 20210617 1
To identify approaches to target DNA repair vulnerabilities in cancer, we discovered nanomolar potent, selective, low molecular weight (MW), allosteric inhibitors of the polymerase function of DNA polymerase Polθ, including ART558. ART558 inhibits the major Polθ-mediated DNA repair process, Theta-Mediated End Joining, without targeting Non-Homologous End Joining. In addition, ART558 elicits DNA damage and synthetic lethality in BRCA1- or BRCA2-mutant tumour cells and enhances the effects of a PA ...[more]