A logical mechanism by which SNPs affect the pathophysiology of disease is through altering the expression of genes. Several studies have explored how SNPs alter expression of nearby genes (cis-eQTLs), but far fewer studies have explored distant effects (trans-eQTLs). This is likely due to the dramatic expansion of statistical tests required and the limited interpretability of results. We hypothesize that distant effects seen in trans-eQTLs are propagated or mediated by biological pathways. To investigate this hypothesis, we performed a focused trans-eQTL analysis on SNPs with known cis-effects by applying Signaling Pathway Impact Analysis (SPIA) to two independent datasets that have both genotype and gene-expression data. Fifteen SNP-Pathway associations were identified and replicated after correction for multiple testing. Given our requirement that all SNPs have cis-effects we performed conditional analyses to determine the effect of the cis-gene expression on our SNP-Pathway associations. Additionally, we annotated these results for functional elements from the ENCODE project to determine biological plausibility and generalizability. In summary, we identify trans-eQTL effects within the context of biological pathways that replicate across multiple ethnic populations.
Identifer | oai:union.ndltd.org:VANDERBILT/oai:VANDERBILTETD:etd-07162014-192116 |
Date | 17 July 2014 |
Creators | Wiley, Laura Katherine |
Contributors | Joshua C Denny, William S Bush, Josh F Peterson |
Publisher | VANDERBILT |
Source Sets | Vanderbilt University Theses |
Language | English |
Detected Language | English |
Type | text |
Format | application/pdf |
Source | http://etd.library.vanderbilt.edu/available/etd-07162014-192116/ |
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