Glucocorticoid intermittence coordinates rescue of energy and mass in aging-related sarcopenia through the myocyte-autonomous PGC1alpha-Lipin1 transactivation
Prabakaran, A. D.; McFarland, K.; Miz, K.; Durumutla, H. B.; Soussi, F. E. A.; Piczer, K.; Latimer, H.; Werbrich, C.; Blair, N. S.; Millay, D. P.; Prideaux, B.; Finck, B. N.; Quattrocelli, M.
Show abstract
Sarcopenia burdens the elderly population through loss of muscle energy and mass, yet treatments to functionally rescue both parameters are missing. The glucocorticoid prednisone remodels muscle metabolism based on frequency of intake, but its mechanisms in sarcopenia are unknown. We found that once-weekly intermittent prednisone rescued muscle quality in aged 24-month-old mice to levels comparable to young 4-month-old mice. We discovered an age- and sex-independent glucocorticoid receptor transactivation program in muscle encompassing PGC1alpha and its co-factor Lipin1. Treatment coordinately improved mitochondrial abundance through isoform 1 and muscle mass through isoform 4 of the myocyte-specific PGC1alpha, which was required for the treatment-driven increase in carbon shuttling from glucose oxidation to amino acid biogenesis. We also probed the myocyte-specific Lipin1 as non-redundant factor coaxing PGC1alpha upregulation to the stimulation of both oxidative and anabolic capacities. Our study unveils an aging-resistant druggable program in myocytes to coordinately rescue energy and mass in sarcopenia.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Exercise is associated with younger methylome and transcriptome profiles in human skeletal muscle 97%
- PGC-1α regulates mitochondrial calcium homeostasis, SR stress and cell death to mitigate skeletal muscle aging 96%
- Altered Relaxation and Mitochondria-Endoplasmic Reticulum Contact Sites Precede Major (Mal)adaptations in Aging Skeletal Muscle and are Prevented by Exercise 96%
Similar papers in this journal
Similar papers in this journal
- Initiation phase cellular reprogramming ameliorates DNA damage in the ERCC1 mouse model of premature aging. 93%
- Age and Sex-Specific Changes in Mitochondrial Quality Control in Skeletal and Cardiac Muscle 93%
- Adipocyte-Specific Ablation Of PU.1 Promotes Energy Expenditure and Ameliorates Metabolic Syndrome In Aging Mice 92%
Similar papers in this journal
- Development of a novel transcriptomic measure of aging: Transcriptomic Mortality-risk Age (TraMA) 94%
- Hedgehog dysregulation contributes to tissue-specific inflammaging of resident macrophages 94%
- The coupling between healthspan and lifespan in Caenorhabditis depends on complex interactions between compound intervention and genetic background 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.