Novel pleiotropic BRCA2 pathogenic variants in Lebanese families
Loading...
Date
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier Inc.
Abstract
BRCA1 and BRCA2 associated pathogenic variants are the major cause of familial cases of early onset breast and ovarian cancers. Here we report two novel heterozygous pathogenic variants in exons 18 and 11 of the BRCA2 gene in two Lebanese families. The double nucleotide insertion c.8052_8053dupAA was identified in a 38-year-old Lebanese woman diagnosed with a breast cancer. The patient had a family history of affected first degree relatives. The double nucleotide deletion c.4342_4343delAA was identified in a 67-year-old woman with ovarian cancer. The patient came from a family marked by the occurrence of variable cancers. Her two daughters were also found to carry the deleterious variant. Both genetic aberrations result in a framing error that leads to a premature stop codon giving rise to unstable or truncated proteins. We further discuss two non-mutually exclusive potential scenarios related to the resulting haploinsufficiency and variant-specific dominant negative phenotype that might explain, at least in part, the variable expressivity associated with BRCA2 pathogenic variants. © 2019 Elsevier Inc.
Description
Keywords
Brca2, Breast cancer, Novel pathogenic variants, Ovarian cancer, Pleiotropy, Adult, Aged, Amino acid sequence, Base sequence, Brca2 protein, Family, Female, Genetic pleiotropy, Humans, Lebanon, Middle aged, Mutation, Open reading frames, Pedigree, Brca1 protein, Brca2 protein, human, Article, Breast examination, Breast tumor, Cancer chemotherapy, Case report, Clinical article, Colon cancer, Death, Dna sequence, Exon, Family history, Father, First-degree relative, Genetic analysis, Genetic counseling, Human, Human epidermal growth factor receptor 2 positive breast cancer, Immunohistochemistry, Lebanese, Mastectomy, Metastatic breast cancer, Mother, Ovariectomy, Ovary cancer, Postoperative complication, Priority journal, Sibling, Chemistry, Genetics, Nucleotide sequence, Open reading frame