Scinovex
article Open AccessTop 1% cited

Trapping of PARP1 and PARP2 by Clinical PARP Inhibitors

Cancer Research · 2012 · Vol. 72(21) · pp. 5588–5599
Junko MuraiShar-yin N. HuangBenu Brata DasAmèlie RenaudYiping ZhangJames H. DoroshowJiuping JiShunichi TakedaYves Pommier

Abstract

Small-molecule inhibitors of PARP are thought to mediate their antitumor effects as catalytic inhibitors that block repair of DNA single-strand breaks (SSB). However, the mechanism of action of PARP inhibitors with regard to their effects in cancer cells is not fully understood. In this study, we show that PARP inhibitors trap the PARP1 and PARP2 enzymes at damaged DNA. Trapped PARP-DNA complexes were more cytotoxic than unrepaired SSBs caused by PARP inactivation, arguing that PARP inhibitors act in part as poisons that trap PARP enzyme on DNA. Moreover, the potency in trapping PARP differed markedly among inhibitors with niraparib (MK-4827) > olaparib (AZD-2281) >> veliparib (ABT-888), a pattern not correlated with the catalytic inhibitory properties for each drug. We also analyzed repair pathways for PARP-DNA complexes using 30 genetically altered avian DT40 cell lines with preestablished deletions in specific DNA repair genes. This analysis revealed that, in addition to homologous recombination, postreplication repair, the Fanconi anemia pathway, polymerase β, and FEN1 are critical for repairing trapped PARP-DNA complexes. In summary, our study provides a new mechanistic foundation for the rational application of PARP inhibitors in cancer therapy.

PARP inhibition in cancer therapyDNA Repair MechanismsIntegrated Circuits and Semiconductor Failure AnalysisVeliparibOlaparibPARP1Poly ADP ribose polymeraseDNA repairPARP inhibitorDNA damageHomologous recombinationPostreplication repairBiology

MeSH terms

Poly(ADP-ribose) Polymerase InhibitorsPoly (ADP-Ribose) Polymerase-1AnimalsAntineoplastic AgentsBirdsCell LineDNA RepairEnzyme InhibitorsHumansPhthalazinesPiperazinesPoly(ADP-ribose) PolymerasesTransfectionImmunoblottingRNA, Small Interfering
Citations
2,130
FWCI
34.02
field-weighted impact
References
50
Percentile
100%
vs. same field & year
Citations per year
Cited by
Laying a trap to kill cancer cells: PARP inhibitors and their mechanisms of action
Science Translational Medicine · 2016 · 742 citations
The Landscape of Targeted Therapies in TNBC
Cancers · 2020 · 434 citations
Epithelial ovarian cancer: Evolution of management in the era of precision medicine
CA A Cancer Journal for Clinicians · 2019 · 1,454 citations
Targeting the DNA Damage Response in Cancer
Molecular Cell · 2015 · 1,490 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.