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. 2025 Jan;7(1):84-101.
doi: 10.1038/s42255-024-01176-8. Epub 2025 Jan 2.

Cellular Feimin enhances exercise performance by suppressing muscle thermogenesis

Affiliations

Cellular Feimin enhances exercise performance by suppressing muscle thermogenesis

Ying Peng et al. Nat Metab. 2025 Jan.

Erratum in

Abstract

Exercise can rapidly increase core body temperature, and research has indicated that elevated internal body temperature can independently contribute to fatigue during physical activity. However, the precise mechanisms responsible for regulating thermogenesis in muscles during exercise have remained unclear. Here, we demonstrate that cellular Feimin (cFeimin) enhances exercise performance by inhibiting muscle thermogenesis during physical activity. Mechanistically, we found that AMP-activated protein kinase (AMPK) phosphorylates cFeimin and facilitates its translocation into the cell nucleus during exercise. Within the nucleus, cFeimin binds to the forkhead transcription factor FOXC2, leading to the suppressed expression of sarcolipin (Sln), which is a key regulator of muscle thermogenesis. In addition, our results further reveal that short-term AMPK agonist treatments can enhance exercise performance through the activation of the AMPK-cFeimin signalling pathway. In summary, these results underscore the crucial role of cFeimin in enhancing exercise performance by modulating SLN-mediated thermogenesis.

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Conflict of interest statement

Competing interests: The authors declare no competing interests.

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