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Updated: Jan 8, 2026

Author Spotlight: Mitochondrial Remodeling in Skeletal Muscle
Published on: December 1, 2023
Body mass shapes mitochondrial NADH and NADPH sources in mammalian skeletal muscle
Mélanie Boël1, Yann Voituron2, Damien Roussel2
1Université Claude Bernard Lyon 1, LEHNA UMR5023, CNRS, ENTPE, F-69518 Vaulx-en-Velin, France.
Abstract:
Here, we investigate whether the elevated mitochondrial H2O2 release in small mammals arises from a tradeoff between NAD-dependent enzymes, which synthesizes NADH to support high oxidative phosphorylation, and NADP-dependent enzymes, which generates NADPH to detoxify H2O2 within the matrix. We measured the activities of NAD- and NADP-dependent enzymes in skeletal muscle mitochondria from mammal species ranging from 4 g to 600 kg. The activities of the two most active NADPH-producing enzymes increased, whereas NAD-dependent enzyme activities declined with body mass. Therefore, small mammals prioritize NADH synthesis at the expense of NADPH, increasing the oxidative cost of mitochondrial metabolism.
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