A ribosomal gene panel predicting a novel synthetic lethality in non-BRCAness tumors

Chao Zhang1,2, Qiang Guo3, Lifeng Chen4,5

  • 1Beijing Institute of Basic Medical Sciences, 100850, Beijing, China.

Insights

A new gene panel predicts response to PARP inhibitors and cisplatin in cancers with normal DNA repair (HR proficiency). This discovery offers a broader application for these cancer therapies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Poly (ADP-ribose) polymerase (PARP) inhibitors are effective targeted therapies for cancers with homologous recombination (HR) deficiency.
  • Response to PARP inhibitors/cisplatin in HR-proficient patients is observed but lacks clear biomarkers.

Purpose of the Study:

  • To identify biomarkers predicting response to PARP inhibitors/cisplatin in HR-proficient cancer patients.
  • To elucidate the mechanism of PARP inhibitor/cisplatin action in HR-proficient cells.
  • To explore strategies for overcoming resistance to PARP inhibitors/cisplatin.

Main Methods:

  • Identification of a gene panel predicting response to PARP inhibitors/cisplatin.
  • Investigation of DNA damage signaling (ATM) and ribosomal stress.
  • Validation using clinical datasets, ovarian cancer organoids, and patient data (RNA-seq, WGS).
  • Screening for drugs that enhance sensitivity to PARP inhibitors/cisplatin.

Main Results:

  • A panel of eight ribosomal genes was identified as a predictor of response in HR-proficient patients.
  • PARP inhibitor/cisplatin induces pro-apoptotic ribosomal stress via ATM signaling in cells with high gene panel expression.
  • The gene panel was validated across multiple datasets and patient cohorts.
  • Marketed drugs were found to enhance PARP inhibitor/cisplatin sensitivity in resistant cell lines and organoids.

Conclusions:

  • A novel gene panel serves as a predictive biomarker for PARP inhibitor/cisplatin therapy in HR-proficient cancers.
  • A new model of cell fate balance involving ATM signaling, ribosomal stress, and HR repair is proposed.
  • These findings expand the potential clinical application of PARP inhibitors/cisplatin and suggest strategies to overcome resistance.