4.7 Article

Temperature controls oxidative phosphorylation and reactive oxygen species production through uncoupling in rat skeletal muscle mitochondria

Journal

FREE RADICAL BIOLOGY AND MEDICINE
Volume 83, Issue -, Pages 12-20

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2015.02.012

Keywords

Skeletal muscle mitochondria; Temperature; Oxidative phosphorylation; Uncoupling protein; Mitochondrial function; Free radicals

Funding

  1. Polish Ministry of Science and Higher Education [Harmonia 2013/08/M/NZ7/00787]

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Mitochondrial respiratory and phosphorylation activities, mitochondrial uncoupling, and hydrogen peroxide formation were studied in isolated rat skeletal muscle mitochondria during experimentally induced hypothermia (25 degrees C) and hyperthermia (42 degrees C) compared to the physiological temperature of resting muscle (35 degrees C). For nonphosphorylating mitochondria, increasing the temperature from 25 to 42 degrees C led to a decrease in membrane potential, hydrogen peroxide production, and quinone reduction levels. For phosphorylating mitochondria, no temperature-dependent changes in these mitochondrial functions were observed. However, the efficiency of oxidative phosphorylation decreased, whereas the oxidation and phosphorylation rates and oxidative capacities of the mitochondria increased, with increasing assay temperature. An increase in proton leak, including uncoupling protein-mediated proton leak, was observed with increasing assay temperature, which could explain the reduced oxidative phosphorylation efficiency and reactive oxygen species production. (C) 2015 Elsevier Inc. All rights reserved.

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