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Published on: July 21, 2018
PARP-1 selectively impairs KRAS-driven phenotypic and molecular features in intrahepatic cholangiocarcinoma
Friederike L Keggenhoff1, Darko Castven2, Diana Becker1
1First Department of Internal Medicine, University Medical Center of the Johannes Gutenberg University, Mainz, Germany.
Objective:
Intrahepatic cholangiocarcinoma (iCCA) is the second most common primary liver cancer with limited therapeutic options. KRAS mutations are among the most abundant genetic alterations in iCCA associated with poor clinical outcome and treatment response. Recent findings indicate that Poly(ADP-ribose)polymerase1 (PARP-1) is implicated in KRAS-driven cancers, but its exact role in cholangiocarcinogenesis remains undefined.
Design:
PARP-1 inhibition was performed in patient-derived and established iCCA cells using RNAi, CRISPR/Cas9 and pharmacological inhibition in KRAS-mutant, non-mutant cells. In addition, Parp-1 knockout mice were combined with iCCA induction by hydrodynamic tail vein injection to evaluate an impact on phenotypic and molecular features of Kras-driven and Kras-wildtype iCCA. Clinical implications were confirmed in authentic human iCCA.
Results:
PARP-1 was significantly enhanced in KRAS-mutant human iCCA. PARP-1-based interventions preferentially impaired cell viability and tumourigenicity in human KRAS-mutant cell lines. Consistently, loss of Parp-1 provoked distinct phenotype in Kras/Tp53-induced versus Akt/Nicd-induced iCCA and abolished Kras-dependent cholangiocarcinogenesis. Transcriptome analyses confirmed preferential impairment of DNA damage response pathways and replicative stress response mediated by CHK1. Consistently, inhibition of CHK1 effectively reversed PARP-1 mediated effects. Finally, Parp-1 depletion induced molecular switch of KRAS-mutant iCCA recapitulating good prognostic human iCCA patients.
Conclusion:
Our findings identify the novel prognostic and therapeutic role of PARP-1 in iCCA patients with activation of oncogenic KRAS signalling.
Insights
Poly(ADP-ribose)polymerase1 (PARP-1) inhibition impairs KRAS-mutant intrahepatic cholangiocarcinoma (iCCA) growth. PARP-1 depletion in KRAS-mutant iCCA offers a novel therapeutic strategy and prognostic marker.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Intrahepatic cholangiocarcinoma (iCCA) is a prevalent liver cancer with limited treatment options.
- KRAS mutations are common in iCCA, correlating with poor outcomes.
- The role of Poly(ADP-ribose)polymerase1 (PARP-1) in KRAS-driven iCCA is not fully understood.
Purpose of the Study:
- To investigate the role of PARP-1 in KRAS-mutant iCCA.
- To evaluate PARP-1 as a therapeutic target and prognostic marker in iCCA.
Main Methods:
- PARP-1 inhibition using RNAi, CRISPR/Cas9, and pharmacological agents in iCCA cell lines (KRAS-mutant and non-mutant).
- Evaluation in Parp-1 knockout mice with induced iCCA (Kras-driven and Kras-wildtype).
- Confirmation of clinical implications in human iCCA samples.
Main Results:
- PARP-1 expression is elevated in KRAS-mutant iCCA.
- PARP-1 inhibition significantly reduced viability and tumorigenicity in KRAS-mutant iCCA cells.
- Loss of PARP-1 distinctly affected iCCA phenotypes and abolished KRAS-dependent tumorigenesis, impacting DNA damage and stress response pathways.
- PARP-1 depletion in KRAS-mutant iCCA mimicked favorable prognostic molecular features.
Conclusions:
- PARP-1 plays a significant role in KRAS-driven iCCA.
- PARP-1 inhibition represents a potential therapeutic strategy for iCCA patients with KRAS mutations.
- PARP-1 serves as a novel prognostic indicator in iCCA.
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