Targeting PARP-1 allosteric regulation offers therapeutic potential against cancer.
Publication/Presentation Date
1-1-2014
Abstract
PARP-1 is a nuclear protein that has important roles in maintenance of genomic integrity. During genotoxic stress, PARP-1 recruits to sites of DNA damage where PARP-1 domain architecture initiates catalytic activation and subsequent poly(ADP-ribose)-dependent DNA repair. PARP-1 inhibition is a promising new way to selectively target cancers harboring DNA repair deficiencies. However, current inhibitors target other PARPs, raising important questions about long-term off-target effects. Here, we propose a new strategy that targets PARP-1 allosteric regulation as a selective way of inhibiting PARP-1. We found that disruption of PARP-1 domain-domain contacts through mutagenesis held no cellular consequences on recruitment to DNA damage or a model system of transcriptional regulation, but prevented DNA-damage-dependent catalytic activation. Furthermore, PARP-1 mutant overexpression in a pancreatic cancer cell line (MIA PaCa-2) increased sensitivity to platinum-based anticancer agents. These results not only highlight the potential of a synergistic drug combination of allosteric PARP inhibitors with DNA-damaging agents in genomically unstable cancer cells (regardless of homologous recombination status), but also signify important applications of selective PARP-1 inhibition. Finally, the development of a high-throughput PARP-1 assay is described as a tool to promote discovery of novel PARP-1 selective inhibitors.
Volume
74
Issue
1
First Page
31
Last Page
37
ISSN
1538-7445
Published In/Presented At
Steffen, J. D., Tholey, R. M., Langelier, M. F., Planck, J. L., Schiewer, M. J., Lal, S., Bildzukewicz, N. A., Yeo, C. J., Knudsen, K. E., Brody, J. R., & Pascal, J. M. (2014). Targeting PARP-1 allosteric regulation offers therapeutic potential against cancer. Cancer research, 74(1), 31–37. https://doi.org/10.1158/0008-5472.CAN-13-1701
Disciplines
Business Administration, Management, and Operations | Health and Medical Administration | Management Sciences and Quantitative Methods
PubMedID
24189460
Department(s)
Administration and Leadership
Document Type
Article