| Literature DB >> 29199021 |
Hao Li1, Xu Wang1, Daria Rukina2, Qingyao Huang3, Tao Lin1, Vincenzo Sorrentino1, Hongbo Zhang1, Maroun Bou Sleiman1, Danny Arends4, Aaron McDaid5, Peiling Luan1, Naveed Ziari1, Laura A Velázquez-Villegas3, Karim Gariani1, Zoltan Kutalik5, Kristina Schoonjans3, Richard A Radcliffe6, Pjotr Prins7, Stephan Morgenthaler2, Robert W Williams8, Johan Auwerx9.
Abstract
Identifying genetic and environmental factors that impact complex traits and common diseases is a high biomedical priority. Here, we developed, validated, and implemented a series of multi-layered systems approaches, including (expression-based) phenome-wide association, transcriptome-/proteome-wide association, and (reverse-) mediation analysis, in an open-access web server (systems-genetics.org) to expedite the systems dissection of gene function. We applied these approaches to multi-omics datasets from the BXD mouse genetic reference population, and identified and validated associations between genes and clinical and molecular phenotypes, including previously unreported links between Rpl26 and body weight, and Cpt1a and lipid metabolism. Furthermore, through mediation and reverse-mediation analysis we established regulatory relations between genes, such as the co-regulation of BCKDHA and BCKDHB protein levels, and identified targets of transcription factors E2F6, ZFP277, and ZKSCAN1. Our multifaceted toolkit enabled the identification of gene-gene and gene-phenotype links that are robust and that translate well across populations and species, and can be universally applied to any populations with multi-omics datasets.Entities:
Keywords: BXD; PheWAS; QTL; TWAS; ePheWAS; genetic reference population; mediation analysis; systems genetics
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Year: 2017 PMID: 29199021 DOI: 10.1016/j.cels.2017.10.016
Source DB: PubMed Journal: Cell Syst ISSN: 2405-4712 Impact factor: 11.091