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Limiting Mrs2-dependent mitochondrial Mg2+uptake induces metabolic programming in prolonged dietary stress

Authors :
Madaris, Travis R.
Venkatesan, Manigandan
Maity, Soumya
Stein, Miriam C.
Vishnu, Neelanjan
Venkateswaran, Mridula K.
Davis, James G.
Ramachandran, Karthik
Uthayabalan, Sukanthathulse
Allen, Cristel
Osidele, Ayodeji
Stanley, Kristen
Bigham, Nicholas P.
Bakewell, Terry M.
Narkunan, Melanie
Le, Amy
Karanam, Varsha
Li, Kang
Mhapankar, Aum
Norton, Luke
Ross, Jean
Aslam, M. Imran
Reeves, W. Brian
Singh, Brij B.
Caplan, Jeffrey
Wilson, Justin J.
Stathopulos, Peter B.
Baur, Joseph A.
Madesh, Muniswamy
Source :
Cell Reports; 20230101, Issue: Preprints
Publication Year :
2023

Abstract

The most abundant cellular divalent cations, Mg2+(mM) and Ca2+(nM-μM), antagonistically regulate divergent metabolic pathways with several orders of magnitude affinity preference, but the physiological significance of this competition remains elusive. In mice consuming a Western diet, genetic ablation of the mitochondrial Mg2+channel Mrs2prevents weight gain, enhances mitochondrial activity, decreases fat accumulation in the liver, and causes prominent browning of white adipose. Mrs2 deficiency restrains citrate efflux from the mitochondria, making it unavailable to support de novolipogenesis. As citrate is an endogenous Mg2+chelator, this may represent an adaptive response to a perceived deficit of the cation. Transcriptional profiling of liver and white adipose reveals higher expression of genes involved in glycolysis, β-oxidation, thermogenesis, and HIF-1α-targets, in Mrs2−/−mice that are further enhanced under Western-diet-associated metabolic stress. Thus, lowering mMg2+promotes metabolism and dampens diet-induced obesity and metabolic syndrome.

Details

Language :
English
ISSN :
22111247
Issue :
Preprints
Database :
Supplemental Index
Journal :
Cell Reports
Publication Type :
Periodical
Accession number :
ejs62245731
Full Text :
https://doi.org/10.1016/j.celrep.2023.112155