Abstract

BackgroundGene expression genetic studies in human tissues and cells identify cis- and trans-acting expression quantitative trait loci (eQTLs). These eQTLs provide insights into regulatory mechanisms underlying disease risk. However, few studies systematically characterized eQTL results across cell and tissues types. We synthesized eQTL results from >50 datasets, including new primary data from human brain, peripheral plaque and kidney samples, in order to discover features of human eQTLs.ResultsWe find a substantial number of robust cis-eQTLs and far fewer trans-eQTLs consistent across tissues. Analysis of 45 full human GWAS scans indicates eQTLs are enriched overall, and above nSNPs, among positive statistical signals in genetic mapping studies, and account for a significant fraction of the strongest human trait effects. Expression QTLs are enriched for gene centricity, higher population allele frequencies, in housekeeping genes, and for coincidence with regulatory features, though there is little evidence of 5′ or 3′ positional bias. Several regulatory categories are not enriched including microRNAs and their predicted binding sites and long, intergenic non-coding RNAs. Among the most tissue-ubiquitous cis-eQTLs, there is enrichment for genes involved in xenobiotic metabolism and mitochondrial function, suggesting these eQTLs may have adaptive origins. Several strong eQTLs (CDK5RAP2, NBPFs) coincide with regions of reported human lineage selection. The intersection of new kidney and plaque eQTLs with related GWAS suggest possible gene prioritization. For example, butyrophilins are now linked to arterial pathogenesis via multiple genetic and expression studies. Expression QTL and GWAS results are made available as a community resource through the NHLBI GRASP database [http://apps.nhlbi.nih.gov/grasp/].ConclusionsExpression QTLs inform the interpretation of human trait variability, and may account for a greater fraction of phenotypic variability than protein-coding variants. The synthesis of available tissue eQTL data highlights many strong cis-eQTLs that may have important biologic roles and could serve as positive controls in future studies. Our results indicate some strong tissue-ubiquitous eQTLs may have adaptive origins in humans. Efforts to expand the genetic, splicing and tissue coverage of known eQTLs will provide further insights into human gene regulation.Electronic supplementary materialThe online version of this article (doi:10.1186/1471-2164-15-532) contains supplementary material, which is available to authorized users.

Highlights

  • Gene expression genetic studies in human tissues and cells identify cis- and trans-acting expression quantitative trait loci

  • In some cases significant results beyond those originally reported were available via collaboration, otherwise the results reflected either new results from this paper or publicly available eQTL results that passed statistical correction thresholds defined by the original authors

  • Future researchers searching for and claiming tissue-specific eQTLs could screen their results against the results we collated and deposited in the GRASP database to ensure there is no prior evidence in other tissues

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Summary

Introduction

Gene expression genetic studies in human tissues and cells identify cis- and trans-acting expression quantitative trait loci (eQTLs). Later studies undertook multi-tissue comparisons of cis-eQTLs including lymphoblastoid cell lines (LCL) versus skin cells [33]; LCL, skin, and fat [36]; liver, omental, and subcutaneous adipose [9], and re-analysis of the Dimas et al datasets with new methods [37]. Overall, these later studies found evidence for a high degree of sharing (~50-80%) of cis-eQTLs across tissues, while still indicating a significant minority of cis-eQTLs remain relatively tissue-specific. A rigorous comparison, across many tissues and populations with good statistical power remains relatively incomplete

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