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Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
RNASEH2B loss and PARP inhibition in advanced prostate cancer
Juliet Carmichael1,2, Ines Figueiredo1, Bora Gurel1
1The Institute of Cancer Research, London, United Kingdom.
Abstract:
BACKGROUNDClinical trials have suggested antitumor activity from PARP inhibition beyond homologous recombination deficiency (HRD). RNASEH2B loss is unrelated to HRD and preclinically sensitizes to PARP inhibition. The current study reports on RNASEH2B protein loss in advanced prostate cancer and its association with RB1 protein loss, clinical outcome, and clonal dynamics during treatment with PARP inhibition in a prospective clinical trial.METHODSWhole tumor biopsies from multiple cohorts of patients with advanced prostate cancer were interrogated using whole-exome sequencing (WES), RNA-Seq (bulk and single nucleus), and IHC for RNASEH2B and RB1. Biopsies from patients treated with olaparib in the TOPARP-A and TOPARP-B clinical trials were used to evaluate RNASEH2B clonal selection during olaparib treatment.RESULTSShallow codeletion of RNASEH2B and adjacent RB1 - colocated at chromosome 13q14 - was common, deep codeletion infrequent, and gene loss associated with lower mRNA expression. In castration-resistant prostate cancer (CRPC) biopsies, RNASEH2B and RB1 mRNA expression correlated, but single nucleus RNA-Seq indicated discordant loss of expression. IHC studies showed that loss of the 2 proteins often occurred independently, arguably due to stochastic second allele loss. Pre- and posttreatment metastatic CRPC (mCRPC) biopsy studies from BRCA1/2 WT tumors, treated on the TOPARP phase II trial, indicated that olaparib eradicated RNASEH2B-loss tumor subclones.CONCLUSIONPARP inhibition may benefit men suffering from mCRPC by eradicating tumor subclones with RNASEH2B loss.TRIAL REGISTRATIONClinicaltrials.gov NCT01682772.FUNDINGAstraZeneca; Cancer Research UK; Medical Research Council; Cancer Research UK; Prostate Cancer UK; Movember Foundation; Prostate Cancer Foundation.
Insights
Loss of RNASEH2B protein in advanced prostate cancer sensitizes tumors to PARP inhibition. Olaparib treatment eradicated RNASEH2B-loss subclones, suggesting a new therapeutic strategy for metastatic castration-resistant prostate cancer.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Clinical trials indicate Poly (ADP-ribose) polymerase (PARP) inhibition shows antitumor activity beyond homologous recombination deficiency (HRD).
- RNASEH2B loss, independent of HRD, shows preclinical promise for sensitizing tumors to PARP inhibition.
- This study investigates RNASEH2B protein loss in advanced prostate cancer, its link to RB1 loss, and its impact on outcomes during PARP inhibition therapy.
Purpose of the Study:
- To assess RNASEH2B protein loss in advanced prostate cancer.
- To examine the association between RNASEH2B loss, RB1 loss, and clinical outcomes.
- To analyze clonal dynamics of RNASEH2B-loss subclones during PARP inhibition treatment.
Main Methods:
- Whole-exome sequencing (WES), bulk and single-nucleus RNA-Seq, and immunohistochemistry (IHC) on tumor biopsies.
- Analysis of patient cohorts with advanced prostate cancer, including those from the TOPARP-A and TOPARP-B clinical trials.
- Evaluation of RNASEH2B and RB1 protein and mRNA expression, and clonal selection during olaparib treatment.
Main Results:
- Shallow codeletion of RNASEH2B and RB1 at chromosome 13q14 was frequent, associated with reduced mRNA expression.
- While mRNA expression correlated, single-nucleus RNA-Seq revealed discordant protein loss for RNASEH2B and RB1.
- Olaparib treatment eradicated RNASEH2B-loss tumor subclones in BRCA1/2 wild-type metastatic castration-resistant prostate cancer (mCRPC).
Conclusions:
- PARP inhibition may offer therapeutic benefits for mCRPC patients by targeting and eliminating RNASEH2B-loss tumor subclones.
- RNASEH2B loss represents a potential predictive biomarker for PARP inhibitor response in prostate cancer.
- Further research into the role of RNASEH2B in prostate cancer progression and treatment response is warranted.
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