Gene Set Enrichment Analyses: lessons learned from the heart failure phenotype

Publication date

2017

Authors

Tragante, Vinicius
Gho, Johannes M. I. H.
Felix, Janine F.
Vasan, Ramachandran S
Smith, Nicholas L.
Voight, Benjamin F
Palmer, Colin Na
van der Harst, PimORCID 0000-0002-2713-686X
Moore, Jason H
Asselbergs, Folkert WORCID 0000-0002-1692-8669ISNI 0000000391548591

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Abstract

BACKGROUND: Genetic studies for complex diseases have predominantly discovered main effects at individual loci, but have not focused on genomic and environmental contexts important for a phenotype. Gene Set Enrichment Analysis (GSEA) aims to address this by identifying sets of genes or biological pathways contributing to a phenotype, through gene-gene interactions or other mechanisms, which are not the focus of conventional association methods. RESULTS: Approaches that utilize GSEA can now take input from array chips, either gene-centric or genome-wide, but are highly sensitive to study design, SNP selection and pruning strategies, SNP-to-gene mapping, and pathway definitions. Here, we present lessons learned from our experience with GSEA of heart failure, a particularly challenging phenotype due to its underlying heterogeneous etiology. CONCLUSIONS: This case study shows that proper data handling is essential to avoid false-positive results. Well-defined pipelines for quality control are needed to avoid reporting spurious results using GSEA.

Keywords

Coronary artery disease, Gene set enrichment analyses, Heart failure

Citation

Tragante, V, Gho, J M I H, Felix, J F, Vasan, R S, Smith, N L, Voight, B F, Palmer, C N, van der Harst, P, Moore, J H, Asselbergs, F W & CHARGE Heart Failure Working Group 2017, 'Gene Set Enrichment Analyses : lessons learned from the heart failure phenotype', BioData mining [E], vol. 10, no. 1, 18, pp. 18. https://doi.org/10.1186/s13040-017-0137-5