Smith, Jonathon A. B.Gabriel, BrendanBrady, Aidan J.Abdelmoez, Ahmed M.Savikj, MladenWright, Shane C.Koutsilieri, StefaniaBarrès, RomainLauschke, Volker M.Krook, AnnaZierath, Juleen R.Pillon, Nicolas J.2025-07-162025-07-162025-09Smith, J A B, Gabriel, B, Brady, A J, Abdelmoez, A M, Savikj, M, Wright, S C, Koutsilieri, S, Barrès, R, Lauschke, V M, Krook, A, Zierath, J R & Pillon, N J 2025, 'Inactivity-induced NR4A3 downregulation in human skeletal muscle affects glucose metabolism and translation: insights from in vitro analysis', Molecular Metabolism, vol. 99, 102200. https://doi.org/10.1016/j.molmet.2025.1022002212-8778ORCID: /0000-0001-6878-8779/work/188340414https://hdl.handle.net/2164/25708The computations were enabled by resources provided by the National Academic Infrastructure for Supercomputing in Sweden (NAISS), partially funded by the Swedish Research Council through grant agreement no. 2022-06725. Figure 4E and graphical abstract were created with BioRender.com.16190345engSubstantive connection via an eligible employment contractSDG 3 - Good Health and Well-beingSkeletal muscleInactivityMetabolismMitochondriaProtein synthesisR MedicineSupplementary DataDASSupplementary InformationRInactivity-induced NR4A3 downregulation in human skeletal muscle affects glucose metabolism and translation: insights from in vitro analysisJournal article10.1016/j.molmet.2025.10220099