Interdisciplinary Program in Genetics, Texas A&M University, College Station, TX 77843-4458, USA.
Genetics. 2013 Jan;193(1):95-108. doi: 10.1534/genetics.112.146779. Epub 2012 Nov 12.
Expression quantitative trait loci (eQTL) studies have established convincing relationships between genetic variants and gene expression. Most of these studies focused on the mean of gene expression level, but not the variance of gene expression level (i.e., gene expression variability). In the present study, we systematically explore genome-wide association between genetic variants and gene expression variability in humans. We adapt the double generalized linear model (dglm) to simultaneously fit the means and the variances of gene expression among the three possible genotypes of a biallelic SNP. The genomic loci showing significant association between the variances of gene expression and the genotypes are termed expression variability QTL (evQTL). Using a data set of gene expression in lymphoblastoid cell lines (LCLs) derived from 210 HapMap individuals, we identify cis-acting evQTL involving 218 distinct genes, among which 8 genes, ADCY1, CTNNA2, DAAM2, FERMT2, IL6, PLOD2, SNX7, and TNFRSF11B, are cross-validated using an extra expression data set of the same LCLs. We also identify ∼300 trans-acting evQTL between >13,000 common SNPs and 500 randomly selected representative genes. We employ two distinct scenarios, emphasizing single-SNP and multiple-SNP effects on expression variability, to explain the formation of evQTL. We argue that detecting evQTL may represent a novel method for effectively screening for genetic interactions, especially when the multiple-SNP influence on expression variability is implied. The implication of our results for revealing genetic mechanisms of gene expression variability is discussed.
表达数量性状基因座 (eQTL) 研究已经建立了遗传变异与基因表达之间的可靠关系。这些研究大多集中在基因表达水平的均值上,但没有关注基因表达水平的方差(即基因表达可变性)。在本研究中,我们系统地探索了人类遗传变异与基因表达可变性之间的全基因组关联。我们采用双广义线性模型 (dglm) 同时拟合双等位基因 SNP 三种可能基因型的基因表达均值和方差。表现出基因表达方差与基因型之间显著关联的基因组位点称为表达可变性 QTL (evQTL)。我们使用来自 210 个 HapMap 个体的淋巴母细胞系 (LCL) 基因表达数据集,鉴定出 cis 作用的 evQTL 涉及 218 个不同的基因,其中 8 个基因,ADCY1、CTNNA2、DAAM2、FERMT2、IL6、PLOD2、SNX7 和 TNFRSF11B,使用相同 LCL 的相同表达数据集进行了交叉验证。我们还在>13000 个常见 SNP 和 500 个随机选择的代表性基因之间鉴定出约 300 个 trans 作用的 evQTL。我们采用两种不同的情况,强调单 SNP 和多个 SNP 对表达可变性的影响,来解释 evQTL 的形成。我们认为,检测 evQTL 可能代表一种有效的遗传相互作用筛选方法,特别是当多个 SNP 对表达可变性的影响暗示时。我们讨论了我们的结果对于揭示基因表达可变性的遗传机制的意义。