<div><p>The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisposition genes, primarily <em>BRCA1</em> and <em>BRCA2</em>. Underlying genetic heterogeneity in these cases is the probable explanation for the failure of all attempts to identify further high-risk alleles. While exome sequencing of non-BRCA1/2 breast cancer cases is a promising strategy to detect new high-risk genes, rational approaches to the rigorous pre-selection of cases are needed to reduce heterogeneity. We selected six families in which the tumours of multiple cases showed a specific genomic profile on array comparative genomic hybridization (aCGH). Linkage analysis in these families revealed a region on chromosome 4 with a LO...
Whole genome sequencing (WGS) is a powerful method for revealing the diversity and complexity of the...
Multigene panels are routinely used to assess for predisposing germline mutations in families at hig...
Background: Whole-genome sequencing (WGS) is a powerful method for revealing the diversity and compl...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk ( approximately 70%) cannot be explained by mutations in the...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk (,70%) cannot be explained by mutations in the known predisp...
Germline mutations in BRCA1 and BRCA2 explain approximately 25% of all familial breast cancers. Desp...
Item does not contain fulltextGermline mutations in BRCA1 and BRCA2 explain approximately 25% of all...
Breast cancer is the most prevalent malignancy among women worldwide and hereditary breast cancer (H...
Background: Multigene panels are routinely used to assess for predisposing germline mutations in fam...
The identification of the two most prevalent susceptibility genes in breast cancer, BRCA1 and BRCA2,...
The identification of the two most prevalent susceptibility genes in breast cancer, BRCA1 and BRCA2,...
Abstract Background In the majority of familial breast cancer (BC) families, the etiology of the dis...
Whole genome sequencing (WGS) is a powerful method for revealing the diversity and complexity of the...
Multigene panels are routinely used to assess for predisposing germline mutations in families at hig...
Background: Whole-genome sequencing (WGS) is a powerful method for revealing the diversity and compl...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk ( approximately 70%) cannot be explained by mutations in the...
The bulk of familial breast cancer risk (∼70%) cannot be explained by mutations in the known predisp...
The bulk of familial breast cancer risk (,70%) cannot be explained by mutations in the known predisp...
Germline mutations in BRCA1 and BRCA2 explain approximately 25% of all familial breast cancers. Desp...
Item does not contain fulltextGermline mutations in BRCA1 and BRCA2 explain approximately 25% of all...
Breast cancer is the most prevalent malignancy among women worldwide and hereditary breast cancer (H...
Background: Multigene panels are routinely used to assess for predisposing germline mutations in fam...
The identification of the two most prevalent susceptibility genes in breast cancer, BRCA1 and BRCA2,...
The identification of the two most prevalent susceptibility genes in breast cancer, BRCA1 and BRCA2,...
Abstract Background In the majority of familial breast cancer (BC) families, the etiology of the dis...
Whole genome sequencing (WGS) is a powerful method for revealing the diversity and complexity of the...
Multigene panels are routinely used to assess for predisposing germline mutations in families at hig...
Background: Whole-genome sequencing (WGS) is a powerful method for revealing the diversity and compl...