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Updated: Feb 5, 2026

Identifying the Effects of BRCA1 Mutations on Homologous Recombination using Cells that Express Endogenous Wild-type BRCA1
Published on: February 17, 2011
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.
Purpose:
The prevalence of homologous recombination DNA damage repair (HR-DDR) deficiencies among all tumor lineages is not well characterized. Therapy directed toward homologous recombination DDR deficiency (HRD) is now approved in ovarian and breast cancer, and there may be additional opportunities for benefit for patients with other cancers. Comprehensive evaluations for HRD are limited in part by the lack of a uniform, cost-effective method for testing and defining HRD.
Methods:
Molecular profiles of 52,426 tumors were reviewed to identify pathogenic mutations in the HR-DDR genes ARID1A, ATM, ATRX, BAP1, BARD1, BLM, BRCA1/2, BRIP1, CHEK1/2, FANCA/C/D2/E/F/G/L, MRE11A, NBN, PALB2, RAD50, RAD51, RAD51B, or WRN. From solid tumors submitted to Caris Life Sciences, molecular profiles were generated using next-generation sequencing (NGS; average read depth, 500×). A total of 17,566 tumors were sequenced with NGS600 (n = 592 genes), and 34,860 tumors underwent hotspot Illumina MiSeq platform testing (n = 47 genes).
Results:
Of the tumors that underwent NGS600 testing, the overall frequency of HRDDR mutations detected was 17.4%, and the most commonly mutated lineages were endometrial (34.4%; n = 1,475), biliary tract (28.9%; n = 343), bladder (23.9%; n = 201), hepatocellular (20.9%; n = 115), gastroesophageal (20.8%; n = 619), and ovarian (20.0%; n = 2,489). Least commonly mutated lineages included GI stromal (3.7%; n = 108), head and neck (6.8%; n = 206), and sarcoma (9.3%; n = 592). ARID1A was the most commonly mutated gene (7.2%), followed by BRCA2 (3.0%), BRCA1 (2.8%), ATM (1.3%), ATRX (1.3%), and CHEK2 (1.3%).
Conclusions:
HR-DDR mutations were seen in 17.4% of tumors across 21 cancer lineages, providing a path to explore the role of HRD-directed therapies, including poly-ADP ribose polymerase inhibitors, DNA-damaging chemotherapies, and newer agents such as ATR inhibitors.
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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