Prevalence of Homologous Recombination-Related Gene Mutations Across Multiple Cancer Types

Arielle L Heeke1, Michael J Pishvaian1, Filipa Lynce1

  • 1Arielle L. Heeke, Michael J. Pishvaian, Filipa Lynce, John L. Marshall, Claudine Isaacs, Georgetown University, Washington, DC, Joanne Xiu, Wang-Juh Chen, Tabari M. Baker, Caris Life Sciences, Inc., Phoenix, AZ; and Jonathan R. Brody, Thomas Jefferson University, Philadelphia, PA.

JCO Precision Oncology
|September 21, 2018
PubMed
Abstract

Insights

Homologous recombination DNA damage repair (HR-DDR) deficiencies were found in 17.4% of over 52,000 tumors across 21 cancer types. This discovery supports exploring HRD-directed therapies for a broader range of cancers.

Area of Science:

  • Genomics and Molecular Biology
  • Oncology
  • Cancer Research

Background:

  • Homologous recombination DNA damage repair (HR-DDR) deficiencies are crucial in cancer development and treatment response.
  • Targeted therapies for HRD are approved for ovarian and breast cancers, suggesting potential in other malignancies.
  • A standardized, cost-effective method for identifying HRD is lacking, limiting comprehensive evaluation.

Purpose of the Study:

  • To characterize the prevalence of HR-DDR deficiencies across diverse tumor types.
  • To identify specific cancer lineages with high frequencies of HR-DDR mutations.
  • To inform the potential expansion of HRD-directed therapies beyond current indications.

Main Methods:

  • Molecular profiles of 52,426 solid tumors were analyzed using next-generation sequencing (NGS).
  • Pathogenic mutations in key HR-DDR genes (e.g., BRCA1/2, ATM, ARID1A) were identified.
  • Tumors were sequenced using two NGS platforms (NGS600 and Illumina MiSeq) covering 592 and 47 genes, respectively.

Main Results:

  • HR-DDR mutations were detected in 17.4% of all analyzed tumors.
  • Endometrial (34.4%), biliary tract (28.9%), and bladder (23.9%) cancers showed the highest frequencies of HR-DDR mutations.
  • ARID1A (7.2%), BRCA2 (3.0%), and BRCA1 (2.8%) were the most frequently mutated HR-DDR genes.

Conclusions:

  • HR-DDR mutations are present in a significant proportion of tumors across various cancer types.
  • The findings support further investigation into HRD-directed therapies, including PARP inhibitors and ATR inhibitors, for a wider patient population.
  • This study provides a foundation for developing broader screening strategies for HRD.

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