[PDF][PDF] Aifm2, a NADH oxidase, supports robust glycolysis and is required for cold-and diet-induced thermogenesis

HP Nguyen, D Yi, F Lin, JA Viscarra, C Tabuchi, K Ngo… - Molecular cell, 2020 - cell.com
HP Nguyen, D Yi, F Lin, JA Viscarra, C Tabuchi, K Ngo, G Shin, AY Lee, Y Wang, HS Sul
Molecular cell, 2020cell.com
Brown adipose tissue (BAT) is highly metabolically active tissue that dissipates energy via
UCP1 as heat, and BAT mass is correlated negatively with obesity. The presence of
BAT/BAT-like tissue in humans renders BAT as an attractive target against obesity and
insulin resistance. Here, we identify Aifm2, a NADH oxidoreductase domain containing
flavoprotein, as a lipid droplet (LD)-associated protein highly enriched in BAT. Aifm2 is
induced by cold as well as by diet. Upon cold or β-adrenergic stimulation, Aifm2 associates …
Summary
Brown adipose tissue (BAT) is highly metabolically active tissue that dissipates energy via UCP1 as heat, and BAT mass is correlated negatively with obesity. The presence of BAT/BAT-like tissue in humans renders BAT as an attractive target against obesity and insulin resistance. Here, we identify Aifm2, a NADH oxidoreductase domain containing flavoprotein, as a lipid droplet (LD)-associated protein highly enriched in BAT. Aifm2 is induced by cold as well as by diet. Upon cold or β-adrenergic stimulation, Aifm2 associates with the outer side of the mitochondrial inner membrane. As a unique BAT-specific first mammalian NDE (external NADH dehydrogenase)-like enzyme, Aifm2 oxidizes NADH to maintain high cytosolic NAD levels in supporting robust glycolysis and to transfer electrons to the electron transport chain (ETC) for fueling thermogenesis. Aifm2 in BAT and subcutaneous white adipose tissue (WAT) promotes oxygen consumption, uncoupled respiration, and heat production during cold- and diet-induced thermogenesis. Aifm2, thus, can ameliorate diet-induced obesity and insulin resistance.
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