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Multilayered Genetic and Omics Dissection of Mitochondrial Activity in a Mouse Reference Population

Authors :
Johan Auwerx
Pouya Faridi
Sander M. Houten
Yibo Wu
Evan G. Williams
Virginija Jovaisaite
Witold Wolski
Zoltán Kutalik
Sébastien Dubuis
Adrienne Mottis
Nicola Zamboni
Ruedi Aebersold
Carmen Argmann
Paediatric Metabolic Diseases
Laboratory Genetic Metabolic Diseases
Other departments
Source :
Scopus-Elsevier, Cell, vol. 158, no. 6, pp. 1415-1430, Cell, Cell, 158(6), 1415-1430. Cell Press
Publisher :
Elsevier Inc.

Abstract

SummaryThe manner by which genotype and environment affect complex phenotypes is one of the fundamental questions in biology. In this study, we quantified the transcriptome—a subset of the metabolome—and, using targeted proteomics, quantified a subset of the liver proteome from 40 strains of the BXD mouse genetic reference population on two diverse diets. We discovered dozens of transcript, protein, and metabolite QTLs, several of which linked to metabolic phenotypes. Most prominently, Dhtkd1 was identified as a primary regulator of 2-aminoadipate, explaining variance in fasted glucose and diabetes status in both mice and humans. These integrated molecular profiles also allowed further characterization of complex pathways, particularly the mitochondrial unfolded protein response (UPRmt). UPRmt shows strikingly variant responses at the transcript and protein level that are remarkably conserved among C. elegans, mice, and humans. Overall, these examples demonstrate the value of an integrated multilayered omics approach to characterize complex metabolic phenotypes.

Details

Language :
English
ISSN :
00928674
Issue :
6
Database :
OpenAIRE
Journal :
Cell
Accession number :
edsair.doi.dedup.....2964a74777340f53d6a43d43b02cee52
Full Text :
https://doi.org/10.1016/j.cell.2014.07.039