4.7 Article

Transcriptome-wide association study reveals candidate causal genes for lung cancer

Journal

INTERNATIONAL JOURNAL OF CANCER
Volume 146, Issue 7, Pages 1862-1878

Publisher

WILEY
DOI: 10.1002/ijc.32771

Keywords

lung cancer; transcriptome-wide association study; GWAS; lung eQTL

Categories

Funding

  1. WM Keck Foundation
  2. National Cancer Institute, National Institutes of Health [S10-RR024574, P30-CA125123, P30-AI036211, DP1-CA174424, R35-GM122598, U19 CA203654, U19 CA148127, U01-CA167462, UM1-CA167462, U01-CA063673]
  3. Institut National du Cancer (France) [TABAC 17-022]
  4. Canadian Institutes of Health Research [MOP-123369]
  5. Fondation de l'Institut universitaire de cardiologie et de pneumologie de Quebec
  6. Chaire de Pneumologie de la Fondation JD Begin de l'Universite Laval

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We have recently completed the largest GWAS on lung cancer including 29,266 cases and 56,450 controls of European descent. The goal of our study has been to integrate the complete GWAS results with a large-scale expression quantitative trait loci (eQTL) mapping study in human lung tissues (n = 1,038) to identify candidate causal genes for lung cancer. We performed transcriptome-wide association study (TWAS) for lung cancer overall, by histology (adenocarcinoma, squamous cell carcinoma and small cell lung cancer) and smoking subgroups (never- and ever-smokers). We performed replication analysis using lung data from the Genotype-Tissue Expression (GTEx) project. DNA damage assays were performed in human lung fibroblasts for selected TWAS genes. As expected, the main TWAS signal for all histological subtypes and ever-smokers was on chromosome 15q25. The gene most strongly associated with lung cancer at this locus using the TWAS approach was IREB2 (p(TWAS) = 1.09E-99), where lower predicted expression increased lung cancer risk. A new lung adenocarcinoma susceptibility locus was revealed on 9p13.3 and associated with higher predicted expression of AQP3 (p(TWAS) = 3.72E-6). Among the 45 previously described lung cancer GWAS loci, we mapped candidate target gene for 17 of them. The association AQP3-adenocarcinoma on 9p13.3 was replicated using GTEx (p(TWAS) = 6.55E-5). Consistent with the effect of risk alleles on gene expression levels, IREB2 knockdown and AQP3 overproduction promote endogenous DNA damage. These findings indicate genes whose expression in lung tissue directly influences lung cancer risk.

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