Mutational profiles of spontaneous and radiation-related mammary carcinomas in a rat model of Brca1 haploinsufficiency.
1/5 보강
[UNLABELLED] Female carriers of a heterozygous germline mutation in / have a high risk of breast cancer.
APA
Nakamura Y, Daino K, et al. (2026). Mutational profiles of spontaneous and radiation-related mammary carcinomas in a rat model of Brca1 haploinsufficiency.. Scientific reports, 16(1). https://doi.org/10.1038/s41598-026-41240-9
MLA
Nakamura Y, et al.. "Mutational profiles of spontaneous and radiation-related mammary carcinomas in a rat model of Brca1 haploinsufficiency.." Scientific reports, vol. 16, no. 1, 2026.
PMID
41735493
Abstract
[UNLABELLED] Female carriers of a heterozygous germline mutation in / have a high risk of breast cancer. Although recent research has suggested that genomic instability via BRCA1/2 haploinsufficiency contributes to the early phase of BRCA-associated carcinogenesis, insights into the role of BRCA haploinsufficiency in carcinogenesis are lacking. We previously reported that the rat, a model of Brca1 haploinsufficiency carcinogenesis, exhibits a significantly higher incidence of mammary carcinomas than wild-type rats exposed to ionizing radiation; notably, the carcinomas retained a wild-type allele. To explore the mutation spectrum underlying Brca1 haploinsufficiency, we performed whole-exome sequencing of spontaneous and radiation-associated mammary carcinomas in wild-type and rats. Mammary tumors from wild-type and rats did not differ significantly regarding the number of somatic single-nucleotide variants (SNVs), small insertions/deletions (InDels), or frequency of copy-number variants (CNVs). The radiation-associated carcinomas of rats had significantly fewer identifiable cancer-driver mutations induced by SNVs and InDels than those of wild-type rats; moreover, irradiated rats tended to have more carcinomas with no detectable cancer-driver mutations via SNVs, InDels or CNVs. Thus, Brca1 haploinsufficiency contributes to breast carcinogenesis by bypassing the generation of cancer-driver mutations that would otherwise occur via accumulation of nonsynonymous mutations and CNVs.
[SUPPLEMENTARY INFORMATION] The online version contains supplementary material available at 10.1038/s41598-026-41240-9.
[SUPPLEMENTARY INFORMATION] The online version contains supplementary material available at 10.1038/s41598-026-41240-9.
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