Patterns of genomic loss of heterozygosity predict homologous recombination repair defects in epithelial ovarian cancer

Шаблоны геномной утраты гетерозиготности прогнозируют дефекты репарации методом гомологичной рекомбинации при эпителиальном раке яичника
Gordon B. Mills, Bryan T. Hennessy, Mark Carey, Karen Smith‐McCune, Russell Broaddus, Kirsten M. Timms, Alexander Gutin, Diana Iliev, Victor Abkevich, Jennifer Potter, Lisa Meyer, K.H. Lu, J Chen, Thuan Van Tran, Deniece R. Williams, Srikanth Jammulapati, Liesel M. FitzGerald, Thomas C. Krivak, Julie A. DeLoia, J. S. Lanchbury
2012-10-09

HRD scorePARP inhibitorsgenomic loss of heterozygosityhomologous recombination repair defectsloss of heterozygosity patterns
BACKGROUND: Defects in BRCA1, BRCA2, and other members of the homologous recombination pathway have potential therapeutic relevance when used to support agents that introduce or exploit double-stranded DNA breaks. This study examines the association between homologous recombination defects and genomic patterns of loss of heterozygosity (LOH). METHODS: Ovarian tumours from two independent data sets were characterised for defects in BRCA1, BRCA2, and RAD51C, and LOH profiles were generated. Publically available data were downloaded for a third independent data set. The same analyses were performed on 57 cancer cell lines. RESULTS: Loss of heterozygosity regions of intermediate size were observed more frequently in tumours with defective BRCA1 or BRCA2 (P=10(-11)). The homologous recombination deficiency (HRD) score was defined as the number of these regions observed in a tumour sample. The association between HRD score and BRCA deficiency was validated in two independent ovarian cancer data sets (P=10(-5) and 10(-29)), and identified breast and pancreatic cell lines with BRCA defects. CONCLUSION: The HRD score appears capable of detecting homologous recombination defects regardless of aetiology or mechanism. This score could facilitate the use of PARP inhibitors and platinum in breast, ovarian, and other cancers.
1
A genomic loss of heterozygosity (LOH) pattern can predict homologous recombination repair defects in epithelial ovarian cancer.
2
The HRD score could facilitate selection of patients for PARP inhibitor and platinum therapies in breast, ovarian, and other cancers.
3
The HRD score detects homologous recombination defects regardless of their aetiology or mechanism.

Patterns of genomic loss of heterozygosity in epithelial ovarian cancer

Prediction of homologous recombination repair defects (HRD) using an HRD score to detect homologous recombination defects irrespective of aetiology or mechanism, with implications for PARP inhibitor and platinum therapy selection

Publication Details
Publication Date
2012-10-09
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Gordon B. Mills
Bryan T. Hennessy
Mark Carey
Karen Smith‐McCune
Russell Broaddus
Kirsten M. Timms
Alexander Gutin
Diana Iliev
Victor Abkevich
Jennifer Potter
Lisa Meyer
K.H. Lu
J Chen
Thuan Van Tran
Deniece R. Williams
Srikanth Jammulapati
Liesel M. FitzGerald
Thomas C. Krivak
Julie A. DeLoia
J. S. Lanchbury
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%