The breast cancer risk variants identified in genome-wide association studies explain only a small fraction of the familial relative risk, and the genes responsible for these associations remain largely unknown. To identify novel risk loci and likely causal genes, we performed a transcriptome-wide association study evaluating associations of genetically predicted gene expression with breast cancer risk in 122,977 cases and 105,974 controls of European ancestry. We used data from the Genotype-Tissue Expression Project to establish genetic models to predict gene expression in breast tissue and evaluated model performance using data from The Cancer Genome Atlas. Of the 8,597 genes evaluated, significant associations were identified for 48 at a...
Previous transcriptome‐wide association studies (TWAS) have identified breast cancer risk genes by i...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
Background: Multiple recent genome-wide association studies (GWAS) have identified a single nucleoti...
The breast cancer risk variants identified in genome-wide association studies explain only a small f...
Genome-wide association studies (GWAS) and large-scale replication studies have identified common va...
Breast cancer is the most common cancer among women. To date, 22 common breast cancer susceptibility...
© 2018 The Author(s) The breast cancer risk variants identified in genome-wide association studies e...
Genome-wide association studies have identified breast cancer risk variants in over 150 genomic regi...
Breast cancer risk is influenced by rare coding variants in susceptibility genes, such as BRCA1, and...
Rare variants in at least 10 genes, including BRCA1, BRCA2, PALB2, ATM, and CHEK2, are associated wi...
There are significant inter-individual differences in the levels of gene expression. Through modulat...
BACKGROUND: Low-frequency variants play an important role in breast cancer (BC) susceptibility. Gene...
Previous transcriptome‐wide association studies (TWAS) have identified breast cancer risk genes by i...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
Background: Multiple recent genome-wide association studies (GWAS) have identified a single nucleoti...
The breast cancer risk variants identified in genome-wide association studies explain only a small f...
Genome-wide association studies (GWAS) and large-scale replication studies have identified common va...
Breast cancer is the most common cancer among women. To date, 22 common breast cancer susceptibility...
© 2018 The Author(s) The breast cancer risk variants identified in genome-wide association studies e...
Genome-wide association studies have identified breast cancer risk variants in over 150 genomic regi...
Breast cancer risk is influenced by rare coding variants in susceptibility genes, such as BRCA1, and...
Rare variants in at least 10 genes, including BRCA1, BRCA2, PALB2, ATM, and CHEK2, are associated wi...
There are significant inter-individual differences in the levels of gene expression. Through modulat...
BACKGROUND: Low-frequency variants play an important role in breast cancer (BC) susceptibility. Gene...
Previous transcriptome‐wide association studies (TWAS) have identified breast cancer risk genes by i...
To access publisher's full text version of this article, please click on the hyperlink in Additional...
Background: Multiple recent genome-wide association studies (GWAS) have identified a single nucleoti...