The 24-Hour Time Course of Integrated Molecular Responses to Resistance Exercise in Human Skeletal Muscle Implicates MYC as a Hypertrophic Regulator That is Sufficient for Growth
Edman, S.; Jones, R. G.; Jannig, P. R.; Fernandez-Gonzalo, R.; Norrbom, J.; Thomas, N. T.; Khadgi, S.; Koopmans, P. J.; Morena, F.; Peterson, C. S.; Scott, L. N.; Greene, N. P.; Figueiredo, V. C.; Fry, C. S.; Zhengye, L.; Lanner, J. T.; Wen, Y.; Alkner, B.; Murach, K. A.; von Walden, F.
Show abstract
Molecular control of recovery after exercise in muscle is temporally dynamic. A time course of biopsies around resistance exercise (RE) combined with -omics is necessary to better comprehend the molecular contributions of skeletal muscle adaptation in humans. Vastus lateralis biopsies before and 30 minutes, 3-, 8-, and 24-hours after acute RE were collected. A time-point matched biopsy-only group was also included. RNA-sequencing defined the transcriptome while DNA methylomics and computational approaches complemented these data. The post-RE time course revealed: 1) DNA methylome responses at 30 minutes corresponded to upregulated genes at 3 hours, 2) a burst of translation- and transcription-initiation factor-coding transcripts occurred between 3 and 8 hours, 3) global gene expression peaked at 8 hours, 4) ribosome-related genes dominated the mRNA landscape between 8 and 24 hours, 5) methylation-regulated MYC was a highly influential transcription factor throughout the 24-hour recovery and played a primary role in ribosome-related mRNA levels between 8 and 24 hours. The influence of MYC in human muscle adaptation was strengthened by transcriptome information from acute MYC overexpression in mouse muscle. To test whether MYC was sufficient for hypertrophy, we generated a muscle fiber-specific doxycycline inducible model of pulsatile MYC induction. Periodic 48-hour pulses of MYC over 4 weeks resulted in higher muscle mass and fiber size in the soleus of adult female mice. Collectively, we present a temporally resolved resource for understanding molecular adaptations to RE in muscle and reveal MYC as a regulator of RE-induced mRNA levels and hypertrophy.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Chemical inhibition of SUMOylation activates the FSHD locus 94%
- Ascending dorsal column sensory neurons respond to spinal cord injury and downregulate genes related to lipid metabolism 93%
- Identification of new interactors of eIF3f by endogenous proximity-dependent biotin labelling in human muscle cells. 93%
Similar papers in this journal
- Transcriptomic Profiling of Skeletal Muscle Adaptations to Exercise and Inactivity 97%
- The mitochondrial mRNA stabilizing protein, SLIRP, regulates skeletal muscle mitochondrial structure and respiration by exercise-recoverable mechanisms 97%
- Training-induced bioenergetic improvement in human skeletal muscle is associated with non-stoichiometric changes in the mitochondrial proteome without reorganization of respiratory chain content 96%
Similar papers in this journal
- Conserved and species-specific transcriptional responses to daily programmed resistance exercise in rat and mouse. 96%
- Characterization of the skeletal muscle arginine methylome in health and disease reveals remodeling in Amyotrophic Lateral Sclerosis 95%
- Skeletal muscle mitochondria contain nuclear-encoded RNA species prior to and following adaptation to exercise training in rats 94%
Similar papers in this journal
- Serum proteomic profiling of physical activity reveals CD300LG as a novel exerkine with a potential causal link to glucose homeostasis 96%
- A 2-Hydroxybutyrate-mediated feedback loop regulates muscular fatigue 96%
- Tissue-specific responses to TFAM and mtDNA copy number manipulation in prematurely ageing mice 94%
Similar papers in this journal
- PGC-1α in the myofibers regulates the balance between myogenic and adipogenic progenitors affecting muscle regeneration 94%
- AMPKα2 is a skeletal muscle stem cell intrinsic regulator of myonuclear accretion 94%
- Input-output signal processing plasticity of vagal motorneurons in response to cardiac ischemic injury 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.