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Novel WRN Helicase Inhibitors Selectively Target Microsatellite-Unstable Cancer Cells.

Gabriele Picco ,
Yanhua Rao ,
Angham Al Saedi ,
Yang Lee ,
Sara F Vieira ,
Shriram Bhosle ,
Kieron May ,
Carmen Herranz-Ors ,
Samantha J Walker ,
Raynold Shenje ,
Cansu Dincer ,
Freddy Gibson ,
Ruby Banerjee ,
Zoe Hewitson ,
Thilo Werner ,
Joshua E Cottom ,
Yang Peng ,
Nanhua Deng ,
Youyou Zhang ,
Eldridge N Nartey ,
Leng Nickels ,
Philip Landis ,
Daniela Conticelli ,
Katrina McCarten ,
Jacob Bush ,
Mamta Sharma ,
Howard Lightfoot ,
David House ,
Emma Milford ,
Emma K Grant ,
Michal P Glogowski ,
Craig D Wagner ,
Marcus Bantscheff ,
Anna Rutkowska-Klute ,
,
Francesca Zappacosta ,
Jonathan Pettinger ,
Syd Barthorpe ,
H Christian Eberl ,
Brian T Jones ,
Jessica L Schneck ,
Dennis J Murphy ,
Emile E Voest ,
Joshua P Taygerly ,
Michael P DeMartino ,
Matthew A Coelho ,
Jonathan Houseley ,
Geeta Sharma ,
Benjamin Schwartz ,
Mathew J Garnett

Abstract

Microsatellite-unstable (MSI) cancers require WRN helicase to resolve replication stress due to expanded DNA (TA)n dinucleotide repeats. WRN is a promising synthetic lethal target for MSI tumors, and WRN inhibitors are in development. In this study, we used CRISPR-Cas9 base editing to map WRN residues critical for MSI cells, validating the helicase domain as the primary drug target. Fragment-based screening led to the development of potent and highly selective WRN helicase covalent inhibitors. These compounds selectively suppressed MSI model growth in vitro and in vivo by mimicking WRN loss, inducing DNA double-strand breaks at expanded TA repeats and DNA damage. Assessment of biomarkers in preclinical models linked TA-repeat expansions and mismatch repair alterations to compound activity. Efficacy was confirmed in immunotherapy-resistant organoids and patient-derived xenograft models. The discovery of potent, selective covalent WRN inhibitors provides proof of concept for synthetic lethal targeting of WRN in MSI cancer and tools to dissect WRN biology. Significance: We report the discovery and characterization of potent, selective WRN helicase inhibitors for MSI cancer treatment, with biomarker analysis and evaluation of efficacy in vivo and in immunotherapy-refractory preclinical models. These findings pave the way to translate WRN inhibition into MSI cancer therapies and provide tools to investigate WRN biology. See related commentary by Wainberg, p. 1369.

More about this publication

Cancer discovery

Volume 14
Issue nr. 8
Pages 1457-1475
Publication date 02-08-2024

Full text links

Publisher website (DOI) 10.1158/2159-8290.CD-24-0052
Europe PubMed Central 38587317
Pubmed 38587317

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