van Leeuwen Elisabeth M, Smouter Françoise A S, Kam-Thong Tony, Karbalai Nazanin, Smith Albert V, Harris Tamara B, Launer Lenore J, Sitlani Colleen M, Li Guo, Brody Jennifer A, Bis Joshua C, White Charles C, Jaiswal Alok, Oostra Ben A, Hofman Albert, Rivadeneira Fernando, Uitterlinden Andre G, Boerwinkle Eric, Ballantyne Christie M, Gudnason Vilmundur, Psaty Bruce M, Cupples L Adrienne, Järvelin Marjo-Riitta, Ripatti Samuli, Isaacs Aaron, Müller-Myhsok Bertram, Karssen Lennart C, van Duijn Cornelia M
Genetic Epidemiology Unit, Department of Epidemiology, Erasmus Medical Center, Rotterdam, the Netherlands.
Max Planck-Institute of Psychiatry, Munich, Germany.
PLoS One. 2014 Oct 20;9(10):e109290. doi: 10.1371/journal.pone.0109290. eCollection 2014.
Genome-wide association studies (GWAS) have revealed 74 single nucleotide polymorphisms (SNPs) associated with high-density lipoprotein cholesterol (HDL) blood levels. This study is, to our knowledge, the first genome-wide interaction study (GWIS) to identify SNP×SNP interactions associated with HDL levels. We performed a GWIS in the Rotterdam Study (RS) cohort I (RS-I) using the GLIDE tool which leverages the massively parallel computing power of Graphics Processing Units (GPUs) to perform linear regression on all genome-wide pairs of SNPs. By performing a meta-analysis together with Rotterdam Study cohorts II and III (RS-II and RS-III), we were able to filter 181 interaction terms with a p-value<1 · 10-8 that replicated in the two independent cohorts. We were not able to replicate any of these interaction term in the AGES, ARIC, CHS, ERF, FHS and NFBC-66 cohorts (Ntotal = 30,011) when adjusting for multiple testing. Our GWIS resulted in the consistent finding of a possible interaction between rs774801 in ARMC8 (ENSG00000114098) and rs12442098 in SPATA8 (ENSG00000185594) being associated with HDL levels. However, p-values do not reach the preset Bonferroni correction of the p-values. Our study suggest that even for highly genetically determined traits such as HDL the sample sizes needed to detect SNP×SNP interactions are large and the 2-step filtering approaches do not yield a solution. Here we present our analysis plan and our reservations concerning GWIS.
全基因组关联研究(GWAS)已揭示出74个与高密度脂蛋白胆固醇(HDL)血液水平相关的单核苷酸多态性(SNP)。据我们所知,本研究是首个识别与HDL水平相关的SNP×SNP相互作用的全基因组相互作用研究(GWIS)。我们在鹿特丹研究(RS)队列I(RS-I)中使用GLIDE工具进行了GWIS,该工具利用图形处理器(GPU)的大规模并行计算能力对全基因组范围内的所有SNP对进行线性回归。通过与鹿特丹研究队列II和III(RS-II和RS-III)进行荟萃分析,我们能够筛选出181个p值<1·10-8的相互作用项,这些相互作用项在两个独立队列中得到了重复验证。在进行多重检验校正后,我们未能在AGES、ARIC、CHS、ERF、FHS和NFBC-66队列(N总计 = 30,01)中重复这些相互作用项中的任何一个。我们的GWIS一致发现,ARMC8(ENSG00000114098)中的rs774801与SPATA8(ENSG00000185594)中的rs12442098之间可能存在与HDL水平相关的相互作用。然而,p值未达到预设的p值Bonferroni校正。我们的研究表明,即使对于像HDL这样高度由基因决定的性状,检测SNP×SNP相互作用所需的样本量也很大,并且两步筛选方法并不能解决问题。在此,我们展示我们的分析计划以及我们对GWIS的保留意见。