Cell morphology QTL reveal gene by environment interactions in a genetically diverse cell population

Author:

O’Connor CallanORCID,Keele Gregory R.ORCID,Martin Whitney,Stodola TimothyORCID,Gatti DanielORCID,Hoffman Brian R.ORCID,Korstanje RonORCID,Churchill Gary A.ORCID,Reinholdt Laura G.ORCID

Abstract

AbstractGenetically heterogenous cell lines from laboratory mice are promising tools for population-based screening as they offer power for genetic mapping, and potentially, predictive value forin vivoexperimentation in genetically matched individuals. To explore this further, we derived a panel of fibroblast lines from a genetic reference population of laboratory mice (the Diversity Outbred, DO). We then used high-content imaging to capture hundreds of cell morphology traits in cells exposed to the oxidative stress-inducing arsenic metabolite monomethylarsonous acid (MMAIII). We employed dose-response modeling to capture latent parameters of response and we then used these parameters to identify several hundred cell morphology quantitative trait loci (cmQTL). Response cmQTL encompass genes with established associations with cellular responses to arsenic exposure, includingAbcc4andTxnrd1, as well as novel gene candidates likeXrcc2. Moreover, baseline trait cmQTL highlight the influence of natural variation on fundamental aspects of nuclear morphology. We show that the natural variants influencing response include both coding and non-coding variation, and that cmQTL haplotypes can be used to predict response in orthogonal cell lines. Our study sheds light on the major molecular initiating events of oxidative stress that are under genetic regulation, including the NRF2-mediated antioxidant response, cellular detoxification pathways, DNA damage repair response, and cell death trajectories.

Publisher

Cold Spring Harbor Laboratory

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