Association of a novel functional promoter variant (rs2075533 C>T) in the apoptosis gene TNFSF8 with risk of lung cancer-a finding from Texas lung cancer genome-wide association study

Sheng Wei, Jiangong Niu, Hui Zhao, Zhensheng Liu, Li E. Wang, Younghun Han, Wei V. Chen, Christopher I. Amos, Thorunn Rafnar, Patrick Sulem, Kari Stefansson, Maria T. Landi, Neil E. Caporaso, Demetrius Albanes, Michael J. Thun, James D. McKay, Paul Brennan, Yufei Wang, Richard S. Houlston, Margaret R. SpitzQingyi Wei

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Published genome-wide association studies (GWASs) have identified few variants in the known biological pathways involved in lung cancer etiology. To mine the possibly hidden causal single nucleotide polymorphisms (SNPs), we explored all SNPs in the extrinsic apoptosis pathway from our published GWAS dataset for 1154 lung cancer cases and 1137 cancer-free controls. In an initial association analysis of 611 tagSNPs in 41 apoptosis-related genes, we identified only 10 tagSNPs associated with lung cancer risk with a P value <10-2, including four tagSNPs in DAPK1 and three tagSNPs in TNFSF8. Unlike DAPK1 SNPs, TNFSF8 rs2181033 tagged other four predicted functional but untyped SNPs (rs776576, rs776577, rs31813148 and rs2075533) in the promoter region. Therefore, we further tested binding affinity of these four SNPs by performing the electrophoretic mobility shift assay. We found that only rs2075533T allele modified levels of nuclear proteins bound to DNA, leading to significantly decreased expression of luciferase reporter constructs by 5- to -10-fold in H1299, HeLa and HCT116 cell lines compared with the C allele. We also performed a replication study of the untyped rs2075533 in an independent Texas population but did not confirm the protective effect. We further performed a mini meta-analysis for SNPs of TNFSF8 obtained from other four published lung cancer GWASs with 12 214 cases and 47 721 controls, and we found that only rs3181366 (r2 = 0.69 with the untyped rs2075533) was associated to lung cancer risk (P = 0.008). Our findings suggest a possible role of novel TNFSF8 variants in susceptibility to lung cancer.

Original languageEnglish (US)
Pages (from-to)507-515
Number of pages9
JournalCarcinogenesis
Volume32
Issue number4
DOIs
StatePublished - Apr 2011

ASJC Scopus subject areas

  • Cancer Research

MD Anderson CCSG core facilities

  • Advanced Technology Genomics Core

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