Intrinsic PARG inhibitor sensitivity is mimicked by TIMELESS haploinsufficiency and rescued by nucleoside supplementation

Author:

Coulson-Gilmer Camilla1ORCID,Littler Samantha1ORCID,Barnes Bethany M1ORCID,Brady Rosie M1,Anagho Holda A2ORCID,Pillay Nisha1ORCID,Dey Malini1ORCID,Macmorland William1,Bronder Daniel1ORCID,Nelson Louisa1ORCID,Tighe Anthony1ORCID,Lin Wei-Hsiang3,Morgan Robert D14ORCID,Unwin Richard D1ORCID,Nielsen Michael L2,McGrail Joanne C1ORCID,Taylor Stephen S1ORCID

Affiliation:

1. Division of Cancer Sciences, School of Medical Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre (MAHSC), Manchester Cancer Research Centre , Wilmslow Road , Manchester  M20 4GJ , UK

2. Proteomics program, Novo Nordisk Foundation Center for Protein Research, Faculty of Health and Medical Sciences, University of Copenhagen , Copenhagen , Denmark

3. Genome Editing Unit, Faculty of Biology, Medicine and Health, University of Manchester, Michael Smith Building , Dover Street , Manchester  M13 9PT , UK

4. Department of Medical Oncology, The Christie NHS Foundation Trust , Wilmslow Rd , Manchester  M20 4BX , UK

Abstract

Abstract A subset of cancer cells are intrinsically sensitive to inhibitors targeting PARG, the poly(ADP-ribose) glycohydrolase that degrades PAR chains. Sensitivity is accompanied by persistent DNA replication stress, and can be induced by inhibition of TIMELESS, a replisome accelerator. However, the nature of the vulnerability responsible for intrinsic sensitivity remains undetermined. To understand PARG activity dependency, we analysed Timeless model systems and intrinsically sensitive ovarian cancer cells. We show that nucleoside supplementation rescues all phenotypes associated with PARG inhibitor sensitivity, including replisome speed and fork stalling, S-phase completion and mitotic entry, proliferation dynamics and clonogenic potential. Importantly nucleoside supplementation restores PARG inhibitor resistance despite the continued presence of PAR chains, indicating that sensitivity does not correlate with PAR levels. In addition, we show that inhibition of thymidylate synthase, an enzyme required for dNTP homeostasis, induces PARG-dependency. Together, these observations suggest that PARG inhibitor sensitivity reflects an inability to control replisome speed and/or maintain helicase-polymerase coupling in response to nucleotide imbalances.

Funder

Cancer Research UK Programme

Medical Research Council

NIHR Manchester Biomedical Research Centre

Cancer Research UK Manchester Centre

Department of Health and Social Care

Wellcome Trust

Novo Nordisk Foundation

Danish Council of Independent Research

Danish Cancer Institute

NNF Copenhagen Bioscience

Publisher

Oxford University Press (OUP)

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