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Mitofusin-2 Induced By Exercise Modifies Lipid Droplet-Mitochondria Communication, Promoting Fatty Acid Oxidation In Male Mice With Nafld
Journal
Metabolism
Date Issued
2023-12-22
Author(s)
Juan Carlos Bórquez
Francisco Díaz-Castro
Francisco Pino-de La Fuente
Karla Espinoza
Ana María Figueroa
Inma Martínez-Ruíz
Vanessa Hernández
Iliana López-Soldado
Raúl Ventura
Joan Carles Domingo
Marta Bosch
Alba Fajardo
David Sebastián
Albert Pol
Antonio Zorzano
Víctor Cortés
María Isabel Hernández-Alvarez
Rodrigo Troncoso
WoS ID
WOS:001165870100001
Abstract
Background and aim: The excessive accumulation of lipid droplets (LDs) is a defining characteristic of nonalcoholic fatty liver disease (NAFLD). The interaction between LDs and mitochondria is functionally important for lipid metabolism homeostasis. Exercise improves NAFLD, but it is not known if it has an effect on hepatic LD-mitochondria interactions. Here, we investigated the influence of exercise on LD-mitochondria interactions and its significance in the context of NAFLD. Approach and results: Mice were fed high-fat diet (HFD) or HFD-0.1 % methionine and choline-deficient diet (MCD) to emulate simple hepatic steatosis or non-alcoholic steatohepatitis, respectively. In both models, aerobic exercise decreased the size of LDs bound to mitochondria and the number of LD-mitochondria contacts. Analysis showed that the effects of exercise on HOMA-IR and liver triglyceride levels were independent of changes in body weight, and a positive correlation was observed between the number of LD-mitochondria contacts and NAFLD severity and with the lipid droplet size bound to mitochondria. Cellular fractionation studies revealed that ATP-coupled respiration and fatty acid oxidation (FAO) were greater in hepatic peridroplet mitochondria (PDM) from HFD-fed exercised mice than from equivalent sedentary mice. Finally, exercise increased FAO and mitofusin-2 abundance exclusively in PDM through a mechanism involving the curvature of mitochondrial membranes and the abundance of saturated lipids. Accordingly, hepatic mitofusin-2 ablation prevented exercise-induced FAO in PDM. Conclusions: This study demonstrates that aerobic exercise has beneficial effects in murine NAFLD models by lessening the interactions between hepatic LDs and mitochondria, and by decreasing LD size, correlating with a reduced severity of NAFLD. Additionally, aerobic exercise increases FAO in PDM and this process is reliant on Mfn-2 enrichment, which modifies LD-mitochondria communication.
OCDE Subjects
Quartile (Date Issued)
Q1
License
acceso restringido