Oxidative phosphorylation is required for cardiomyocyte re-differentiation and long-term fish heart regeneration
Publication date
2025-10
Authors
Lekkos, Konstantinos
Hu, Zhilian
Nguyen, Phong D
Honkoop, Hessel
Sengul, Esra
Alonaizan, Rita
Koth, Jana
Ying, Jun
Lemieux, Madeleine E
Kenward, Alisha
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Abstract
In contrast to humans, fish can fully regenerate their hearts after cardiac injury. However, not all fish have the same regenerative potential, allowing comparative inter-species and intra-species analysis to identify the mechanisms controlling successful heart regeneration. Here we report a differential regenerative response to cardiac cryo-injury among different wild-type zebrafish strains. Correlating these data with single-cell and bulk RNA sequencing data, we identify oxidative phosphorylation (OXPHOS) as a positive regulator of long-term regenerative outcome. OXPHOS levels, driven by glycolysis through the malate-aspartate shuttle, increase as soon as cardiomyocyte proliferation decreases, and this increase is required for cardiomyocyte re-differentiation and successful long-term regeneration. Reduced upregulation of OXPHOS in Astyanax mexicanus cavefish results in the absence of a dynamic temporal sarcomere gene expression program during cardiomyocyte re-differentiation. These findings challenge the assumption that OXPHOS inhibits regeneration and reveal targetable pathways to enhance heart repair in humans after myocardial infarction.
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Journal Article
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Lekkos, K, Hu, Z, Nguyen, P D, Honkoop, H, Sengul, E, Alonaizan, R, Koth, J, Ying, J, Lemieux, M E, Kenward, A, Keeley, S, Spanjaard, B, Kennedy, B W C, Sun, X, Banecki, K, Potts, H G, Ruggiero, G, Montgomery, J, Panáková, D, Junker, J P, Heather, L C, Wang, X, Gonzalez-Rosa, J M, Bakkers, J & Mommersteeg, M T M 2025, 'Oxidative phosphorylation is required for cardiomyocyte re-differentiation and long-term fish heart regeneration', Nature Cardiovascular Research, vol. 4, no. 10, pp. 1363-1380. https://doi.org/10.1038/s44161-025-00718-x