RAD51D Secondary Mutation-Mediated Resistance to PARP-Inhibitor-Based Therapy in HGSOC

Jing Xu1,2, Yilin Dai1,2, Yi Gao1,2

  • 1Obstetrics and Gynecology Hospital of Fudan University, Shanghai 200011, China.

Insights

A RAD51D mutation caused initial response to ovarian cancer treatment. Acquired mutations reversed this, leading to PARP inhibitor resistance. Liquid biopsy can monitor these changes for better treatment.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Ovarian cancer is a leading cause of gynecologic cancer death.
  • PARP inhibitors (PARPis) show promise in ovarian cancer treatment.
  • Somatic reversion mutations in homologous recombination genes can cause PARPi resistance.

Observation:

  • A 61-year-old patient with ovarian cancer initially responded to platinum and PARPi therapy.
  • The patient developed recurrence and resistance to PARPi after 15 months.
  • Next-generation sequencing revealed a germline RAD51D loss-of-function mutation and a secondary reversion mutation.

Findings:

  • The germline RAD51D mutation explained the initial sensitivity to PARPi.
  • A secondary mutation in RAD51D corrected the reading frame, restoring protein expression.
  • This acquired mutation conferred resistance to PARP inhibitors in the ovarian cancer patient.

Implications:

  • Acquired RAD51D mutations can reverse loss-of-function effects, leading to PARPi resistance in hereditary ovarian cancer.
  • Liquid biopsy offers a method for longitudinal monitoring of PARPi-treated ovarian cancer patients.
  • Early identification of acquired resistance mutations via liquid biopsy can guide precision management.

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