Lane Center for Computational Biology, Carnegie Mellon University, 5000 Forbes Avenue Pittsburgh, PA, USA.
Nucleic Acids Res. 2014 Jan;42(1):87-96. doi: 10.1093/nar/gkt857. Epub 2013 Oct 1.
Distal expression quantitative trait loci (distal eQTLs) are genetic mutations that affect the expression of genes genomically far away. However, the mechanisms that cause a distal eQTL to modulate gene expression are not yet clear. Recent high-resolution chromosome conformation capture experiments along with a growing database of eQTLs provide an opportunity to understand the spatial mechanisms influencing distal eQTL associations on a genome-wide scale. We test the hypothesis that spatial proximity contributes to eQTL-gene regulation in the context of the higher-order domain structure of chromatin as determined from recent Hi-C chromosome conformation experiments. This analysis suggests that the large-scale topology of chromatin is coupled with eQTL associations by providing evidence that eQTLs are in general spatially close to their target genes, occur often around topological domain boundaries and preferentially associate with genes across domains. We also find that within-domain eQTLs that overlap with regulatory elements such as promoters and enhancers are spatially more close than the overall set of within-domain eQTLs, suggesting that spatial proximity derived from the domain structure in chromatin plays an important role in the regulation of gene expression.
远端表达数量性状基因座(distal eQTLs)是影响基因组上远离的基因表达的遗传突变。然而,导致远端 eQTL 调节基因表达的机制尚不清楚。最近的高分辨率染色体构象捕获实验以及越来越多的 eQTL 数据库提供了一个机会,可以在全基因组范围内理解影响远端 eQTL 关联的空间机制。我们检验了这样一个假设,即空间接近有助于从最近的 Hi-C 染色体构象实验确定的染色质高级结构域结构的背景下进行 eQTL-基因调控。该分析表明,染色质的大规模拓扑结构与 eQTL 关联相关,这提供了证据表明,eQTL 通常在空间上靠近其靶基因,经常出现在拓扑结构域边界附近,并优先与跨域的基因相关联。我们还发现,与启动子和增强子等调控元件重叠的域内 eQTL 在空间上比总体域内 eQTL 更接近,这表明源自染色质中结构域的空间接近在基因表达调控中起着重要作用。