Joseph J. Bass
The mechanisms of skeletal muscle atrophy in response to transient knockdown of the vitamin D receptor in vivo
Bass, Joseph J.; Kazi, Abid A.; Deane, Colleen S.; Nakhuda, Asif; Ashcroft, Stephen P.; Brook, Matthew S.; Wilkinson, Daniel J.; Phillips, Bethan E.; Philp, Andrew; Tarum, Janelle; Kadi, Fawzi; Andersen, Ditte; Garcia, Amadeo Muñoz; Smith, Ken; Gallagher, Iain J.; Szewczyk, Nathaniel J.; Cleasby, Mark E.; Atherton, Philip J
Authors
Abid A. Kazi
Colleen S. Deane
Asif Nakhuda
Stephen P. Ashcroft
Matthew S. Brook
Daniel J. Wilkinson
Bethan E. Phillips
Andrew Philp
Janelle Tarum
Fawzi Kadi
Ditte Andersen
Amadeo Muñoz Garcia
Ken Smith
Dr Iain Gallagher I.Gallagher@napier.ac.uk
Associate Professor
Nathaniel J. Szewczyk
Mark E. Cleasby
Philip J Atherton
Abstract
Vitamin D deficiency is estimated to affect ∼40% of the world's population and has been associated with impaired muscle maintenance. Vitamin D exerts its actions through the vitamin D receptor (VDR), the expression of which was recently confirmed in skeletal muscle, and its down-regulation is linked to reduced muscle mass and functional decline. To identify potential mechanisms underlying muscle atrophy, we studied the impact of VDR knockdown (KD) on mature skeletal muscle in vivo, and myogenic regulation in vitro in C2C12 cells. Male Wistar rats underwent in vivo electrotransfer (IVE) to knock down the VDR in hind-limb tibialis anterior (TA) muscle for 10 days. Comprehensive metabolic and physiological analysis was undertaken to define the influence loss of the VDR on muscle fibre composition, protein synthesis, anabolic and catabolic signalling, mitochondrial phenotype and gene expression. Finally, in vitro lentiviral transfection was used to induce sustained VDR-KD in C2C12 cells to analyse myogenic regulation. Muscle VDR-KD elicited atrophy through a reduction in total protein content, resulting in lower myofibre area. Activation of autophagic processes was observed, with no effect upon muscle protein synthesis or anabolic signalling. Furthermore, RNA-sequencing analysis identified systematic down-regulation of multiple mitochondrial respiration-related protein and genesets. Finally, in vitro VDR-knockdown impaired myogenesis (cell cycling, differentiation and myotube formation). Together, these data indicate a fundamental regulatory role of the VDR in the regulation of myogenesis and muscle mass, whereby it acts to maintain muscle mitochondrial function and limit autophagy.
Citation
Bass, J. J., Kazi, A. A., Deane, C. S., Nakhuda, A., Ashcroft, S. P., Brook, M. S., Wilkinson, D. J., Phillips, B. E., Philp, A., Tarum, J., Kadi, F., Andersen, D., Garcia, A. M., Smith, K., Gallagher, I. J., Szewczyk, N. J., Cleasby, M. E., & Atherton, P. J. (2021). The mechanisms of skeletal muscle atrophy in response to transient knockdown of the vitamin D receptor in vivo. Journal of Physiology, 599(3), 963-979. https://doi.org/10.1113/jp280652
Journal Article Type | Article |
---|---|
Acceptance Date | Nov 25, 2020 |
Online Publication Date | Dec 24, 2020 |
Publication Date | 2021-02 |
Deposit Date | Jan 29, 2025 |
Publicly Available Date | Jan 29, 2025 |
Journal | The Journal of Physiology |
Print ISSN | 0022-3751 |
Electronic ISSN | 1469-7793 |
Publisher | Wiley |
Peer Reviewed | Peer Reviewed |
Volume | 599 |
Issue | 3 |
Pages | 963-979 |
DOI | https://doi.org/10.1113/jp280652 |
Keywords | atrophy, metabolism, skeletal muscle, vitamin D |
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The mechanisms of skeletal muscle atrophy in response to transient knockdown of the vitamin D receptor in vivo
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http://creativecommons.org/licenses/by/4.0/
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