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Updated: Jul 13, 2025

Methyl-binding DNA capture Sequencing for Patient Tissues
Published on: October 31, 2016
CLINICAL SIGNIFICANCE OF BRCA1 GENE SEQUENCING AND ITS PROMOTER METHYLATION TESTING IN THE SEARCH STRATEGY FOR
L Fishchuk1, O Lobanova2, Z Rossokha1,3
1State Institute of Genetic and Regenerative Medicine of the National Academy of Medical Sciences of Ukraine, Kyiv 04114, Ukraine.
Background:
Currently, there is a great interest in the genetic testing of BRCA1 and BRCA2 due to the fact that for patients with breast cancer (BC) with pathogenic variants of these genes, the use of the PARP inhibitors could be also provided in addition to implemented treatment protocols. The aim of this study was to characterize the molecular genetic structure of the BRCA1 gene in BC patients without progenitor germline mutations taking into account the methylation state of the promoter region.
Materials And Methods:
The study involved 210 patients with newly diagnosed BC. The most common germline pathogenic variants of the BRCA1 (185delAG, 5382insC, 4153delA, T300G) and BRCA2 (6174delT) genes were identified in the peripheral blood. A subgroup of 14 patients without progenitor pathological variants of the BRCA1 and BRCA2 genes and with a family history of cancer was randomly selected. For them, BRCA1 gene sequencing by Sanger and hypermethylation of the BRCA1 gene promoter region were analyzed.
Results:
The following frequencies of BRCA1 mutations were determined in the general group: 5382insC - 8.6%, 4153delA - 0.5%, T300G - 0.5%. The analysis of the BRCA1 gene by Sanger sequencing revealed 11 BRCA1 gene variants in 10 out of 14 BC patients. All of them, according to the currently available data, were defined as "benign" and not clinically relevant. The frequency of the detection of hypermethylation of the BRCA1 gene promoter region in the randomly selected group of patients was 14.3%.
Conclusions:
In BC patients, not only common mutations but also the methylation status of the BRCA1 gene promoter region in the peripheral blood should be determined. The whole-genome sequencing of the BRCA1 gene may be the last step in determining the genetic characteristics of BC patients carried out to optimize the treatment and improve survival thanks to the higher prevalence of the progenitor mutations and hypermethylation of the BRCA1 gene promoter.
Insights
Genetic testing for BRCA1 gene promoter methylation is crucial in breast cancer (BC) patients. This analysis, alongside mutation screening, can optimize treatment and improve survival rates.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Breast cancer (BC) management benefits from genetic testing of BRCA1 and BRCA2 genes, especially for PARP inhibitor eligibility.
- Investigating BRCA1 gene's molecular structure, including promoter methylation, is vital in BC patients lacking germline mutations.
Purpose of the Study:
- To characterize the molecular genetic structure of the BRCA1 gene in breast cancer patients.
- To assess the methylation status of the BRCA1 gene promoter region in relation to BC.
Main Methods:
- Analyzed 210 newly diagnosed BC patients for common BRCA1 and BRCA2 germline mutations.
- Selected 14 BC patients without known pathogenic variants for Sanger sequencing of the BRCA1 gene and promoter hypermethylation analysis.
Main Results:
- Identified BRCA1 mutations (5382insC, 4153delA, T300G) in the general BC cohort.
- Found 11 clinically benign BRCA1 variants in 10 of 14 selected patients via Sanger sequencing.
- Detected BRCA1 gene promoter hypermethylation in 14.3% of the selected BC patient subgroup.
Conclusions:
- BRCA1 gene promoter methylation status is a significant factor in BC patients, alongside common mutations.
- Whole-genome sequencing of BRCA1, including promoter analysis, aids in optimizing BC treatment and survival.
- Comprehensive genetic profiling of BRCA1 is essential for personalized breast cancer therapy.
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