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2. The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by a hypertrophic stimulus.

3. Coordinated Regulation of Myonuclear DNA Methylation, mRNA, And miRNA Levels Associates with The Metabolic Response to Rapid Synergist Ablation-Induced Skeletal Muscle Hypertrophy in Female Mice

4. Coordinated Regulation of Myonuclear DNA Methylation, mRNA, and miRNA Levels Associates With the Metabolic Response to Rapid Synergist Ablation-Induced Skeletal Muscle Hypertrophy in Female Mice.

7. Acute endurance exercise stimulates circulating levels of mitochondrial-derived peptides in humans

9. Genetic and epigenetic regulation of skeletal muscle ribosome biogenesis with exercise

10. Acute endurance exercise stimulates circulating levels of mitochondrial derived peptides in humans

11. Genetic and Epigenetic Regulation of Skeletal Muscle Ribosome Biogenesis with Exercise

12. Ribosome biogenesis and degradation regulate translational capacity during muscle disuse and reloading

13. Satellite Cell Depletion Disrupts Transcriptional Coordination and Muscle Adaptation to Exercise

17. Ribosome biogenesis and degradation regulate translational capacity during muscle disuse and reloading.

19. Impact of resistance exercise on ribosome biogenesis is acutely regulated by post‐exercise recovery strategies

21. Depletion of resident muscle stem cells negatively impacts running volume, physical function, and muscle fiber hypertrophy in response to lifelong physical activity.

22. Thiol/disulfide status regulates the activity of thiol-containing kinases related to energy homeostasis in rat kidney.

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