A1 Refereed original research article in a scientific journal

Whole-exome sequencing of Finnish hereditary breast cancer families




AuthorsMäättä K, Rantapero T, Lindström A, Nykter M, Kankuri-Tammilehto M, Laasanen SL, Schleutker J.

PublisherMacmillan Publishers Limited

Publication year2017

JournalEuropean Journal of Human Genetics

Journal acronymEur J Hum Genet

Volume25

Issue1

First page 85

Last page93

Number of pages9

ISSN1018-4813

DOIhttps://doi.org/10.1038/ejhg.2016.141


Abstract

A remarkable proportion of factors causing genetic predisposition to breast cancer (BC) are unknown in non-BRCA1/2 families. Exome sequencing was performed for 13 high-risk Finnish hereditary breast and/or ovarian cancer (HBOC) families to detect variants contributing to BC susceptibility. After filtering, 18 candidate variants in DNA damage response (DDR) pathway genes were screened in 129 female HBOC patients, up to 989 female controls, and 31 breast tumours by Sanger sequencing/TaqMan assays. In addition, two variants were further studied in 49 male BC patients and 909 male controls. Second, all variants predicted to affect function in six early-onset BC patients were analysed in detail. Variants in ATM, MYC, PLAU, RAD1, and RRM2B were enriched in female HBOC patients compared with controls (odds ratio 1.16-2.16). A rare nonsynonymous variant in RAD50 was detected in a male BC patient. In addition, a very rare BRCA1 variant was identified in a single high-risk family. None of the variants showed wild-type allele loss in breast tumours. Furthermore, novel variants predicted to affect function were detected in early-onset patients in genes, which target DNA repair and replication, signalling, apoptosis, and cell cycle pathways. Family-specific enrichment of multiple DDR pathway gene defects likely explains BC predisposition in the studied families. These findings provide new information on potential BC-related pathways and an excellent premise for future studies.



Last updated on 2024-26-11 at 18:25