The dynamic process of covalent and non-covalent PARylation in the maintenance of genome integrity: a focus on PARP inhibitors

Author:

Beneyton Adèle1,Nonfoux Louis12,Gagné Jean-Philippe2,Rodrigue Amélie1,Kothari Charu2,Atalay Nurgul12,Hendzel Michael J3ORCID,Poirier Guy G2,Masson Jean-Yves1ORCID

Affiliation:

1. CHU de Québec Research Center, HDQ Pavilion, Oncology Division, Laval University Cancer Research Center , 9 McMahon, Québec City , QC G1R 3S3 , Canada

2. CHU de Québec Research Center, CHUL Pavilion, Oncology Division, Laval University Cancer Research Center , 2705 Boulevard Laurier , Québec City , QC G1V 4G2 , Canada

3. Department of Oncology, Faculty of Medicine and Dentistry, University of Alberta, 11560 University Avenue , Edmonton , Alberta T6G 1Z2 , Canada

Abstract

Abstract Poly(ADP-ribosylation) (PARylation) by poly(ADP-ribose) polymerases (PARPs) is a highly regulated process that consists of the covalent addition of polymers of ADP-ribose (PAR) through post-translational modifications of substrate proteins or non-covalent interactions with PAR via PAR binding domains and motifs, thereby reprogramming their functions. This modification is particularly known for its central role in the maintenance of genomic stability. However, how genomic integrity is controlled by an intricate interplay of covalent PARylation and non-covalent PAR binding remains largely unknown. Of importance, PARylation has caught recent attention for providing a mechanistic basis of synthetic lethality involving PARP inhibitors (PARPi), most notably in homologous recombination (HR)-deficient breast and ovarian tumors. The molecular mechanisms responsible for the anti-cancer effect of PARPi are thought to implicate both catalytic inhibition and trapping of PARP enzymes on DNA. However, the relative contribution of each on tumor-specific cytotoxicity is still unclear. It is paramount to understand these PAR-dependent mechanisms, given that resistance to PARPi is a challenge in the clinic. Deciphering the complex interplay between covalent PARylation and non-covalent PAR binding and defining how PARP trapping and non-trapping events contribute to PARPi anti-tumour activity is essential for developing improved therapeutic strategies. With this perspective, we review the current understanding of PARylation biology in the context of the DNA damage response (DDR) and the mechanisms underlying PARPi activity and resistance.

Funder

Canadian Institutes of Health Research

Canada Research Chair in Genome Cell Biology and Dynamics

Canada Research Chair in DNA repair and Cancer Therapeutics

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Oncology

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