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http://hdl.handle.net/1893/31624
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DC Field | Value | Language |
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dc.contributor.author | Bass, Joseph J | en_UK |
dc.contributor.author | Nakhuda, Asif | en_UK |
dc.contributor.author | Deane, Colleen S | en_UK |
dc.contributor.author | Brook, Matthew S | en_UK |
dc.contributor.author | Wilkinson, Daniel J | en_UK |
dc.contributor.author | Phillips, Bethan E | en_UK |
dc.contributor.author | Philp, Andrew | en_UK |
dc.contributor.author | Tarum, Janelle | en_UK |
dc.contributor.author | Kadi, Fawzi | en_UK |
dc.contributor.author | Andersen, Ditte | en_UK |
dc.contributor.author | Garcia, Amadeo Munoz | en_UK |
dc.contributor.author | Smith, Ken | en_UK |
dc.contributor.author | Gallagher, Iain J | en_UK |
dc.contributor.author | Szewczyk, Nathaniel J | en_UK |
dc.contributor.author | Cleasby, Mark E | en_UK |
dc.contributor.author | Atherton, Philip J | en_UK |
dc.date.accessioned | 2020-09-02T00:03:50Z | - |
dc.date.available | 2020-09-02T00:03:50Z | - |
dc.date.issued | 2020-12 | en_UK |
dc.identifier.other | 101059 | en_UK |
dc.identifier.uri | http://hdl.handle.net/1893/31624 | - |
dc.description.abstract | Objective The Vitamin D receptor (VDR) has been positively associated with skeletal muscle mass, function and regeneration. Mechanistic studies have focused on the loss of the receptor, with in vivo whole-body knockout models demonstrating reduced myofibre size and function and impaired muscle development. To understand the mechanistic role upregulation of the VDR elicits in muscle mass/health, we studied the impact of VDR over-expression (OE) in vivo before exploring the importance of VDR expression upon muscle hypertrophy in humans. Methods Wistar rats underwent in vivo electrotransfer (IVE) to overexpress the VDR in the Tibialis anterior (TA) muscle for 10 days, before comprehensive physiological and metabolic profiling to characterise the influence of VDR-OE on muscle protein synthesis (MPS), anabolic signalling and satellite cell activity. Stable isotope tracer (D2O) techniques were used to assess sub-fraction protein synthesis, alongside RNA-Seq analysis. Finally, human participants underwent 20 wks of resistance exercise training, with body composition and transcriptomic analysis. Results Muscle VDR-OE yielded total protein and RNA accretion, manifesting in increased myofibre area, i.e., hypertrophy. The observed increases in MPS were associated with enhanced anabolic signalling, reflecting translational efficiency (e.g., mammalian target of rapamycin (mTOR-signalling), with no effects upon protein breakdown markers being observed. Additionally, RNA-Seq illustrated marked extracellular matrix (ECM) remodelling, while satellite cell content, markers of proliferation and associated cell-cycled related gene-sets were upregulated. Finally, induction of VDR mRNA correlated with muscle hypertrophy in humans following long-term resistance exercise type training. Conclusion VDR-OE stimulates muscle hypertrophy ostensibly via heightened protein synthesis, translational efficiency, ribosomal expansion and upregulation of ECM remodelling-related gene-sets. Furthermore, VDR expression is a robust marker of the hypertrophic response to resistance exercise in humans. The VDR is a viable target of muscle maintenance through testable Vitamin D molecules, as active molecules and analogues. | en_UK |
dc.language.iso | en | en_UK |
dc.publisher | Elsevier | en_UK |
dc.relation | Bass JJ, Nakhuda A, Deane CS, Brook MS, Wilkinson DJ, Phillips BE, Philp A, Tarum J, Kadi F, Andersen D, Garcia AM, Smith K, Gallagher IJ, Szewczyk NJ, Cleasby ME & Atherton PJ (2020) Overexpression of the vitamin D receptor (VDR) induces skeletal muscle hypertrophy. Molecular Metabolism, 42, Art. No.: 101059. https://doi.org/10.1016/j.molmet.2020.101059 | en_UK |
dc.rights | This is an open access article distributed under the terms of the Creative Commons CC-BY license (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. You are not required to obtain permission to reuse this article. | en_UK |
dc.rights.uri | http://creativecommons.org/licenses/by/4.0/ | en_UK |
dc.subject | Vitamin D | en_UK |
dc.subject | Skeletal muscle | en_UK |
dc.subject | Metabolism | en_UK |
dc.subject | Exercise | en_UK |
dc.title | Overexpression of the vitamin D receptor (VDR) induces skeletal muscle hypertrophy | en_UK |
dc.type | Journal Article | en_UK |
dc.identifier.doi | 10.1016/j.molmet.2020.101059 | en_UK |
dc.identifier.pmid | 32771696 | en_UK |
dc.citation.jtitle | Molecular Metabolism | en_UK |
dc.citation.issn | 2212-8778 | en_UK |
dc.citation.volume | 42 | en_UK |
dc.citation.publicationstatus | Published | en_UK |
dc.citation.peerreviewed | Refereed | en_UK |
dc.type.status | VoR - Version of Record | en_UK |
dc.contributor.funder | Medical Research Council | en_UK |
dc.citation.date | 07/08/2020 | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | University of Exeter | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | University of Birmingham | en_UK |
dc.contributor.affiliation | Orebro University | en_UK |
dc.contributor.affiliation | Orebro University | en_UK |
dc.contributor.affiliation | Royal Veterinary College | en_UK |
dc.contributor.affiliation | University of Birmingham | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | Sport | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.contributor.affiliation | Royal Veterinary College | en_UK |
dc.contributor.affiliation | University of Nottingham | en_UK |
dc.identifier.isi | WOS:000597206300008 | en_UK |
dc.identifier.scopusid | 2-s2.0-85089944965 | en_UK |
dc.identifier.wtid | 1656166 | en_UK |
dc.contributor.orcid | 0000-0002-8630-7235 | en_UK |
dc.date.accepted | 2020-07-28 | en_UK |
dcterms.dateAccepted | 2020-07-28 | en_UK |
dc.date.filedepositdate | 2020-08-31 | en_UK |
rioxxterms.apc | not required | en_UK |
rioxxterms.type | Journal Article/Review | en_UK |
rioxxterms.version | VoR | en_UK |
local.rioxx.author | Bass, Joseph J| | en_UK |
local.rioxx.author | Nakhuda, Asif| | en_UK |
local.rioxx.author | Deane, Colleen S| | en_UK |
local.rioxx.author | Brook, Matthew S| | en_UK |
local.rioxx.author | Wilkinson, Daniel J| | en_UK |
local.rioxx.author | Phillips, Bethan E| | en_UK |
local.rioxx.author | Philp, Andrew| | en_UK |
local.rioxx.author | Tarum, Janelle| | en_UK |
local.rioxx.author | Kadi, Fawzi| | en_UK |
local.rioxx.author | Andersen, Ditte| | en_UK |
local.rioxx.author | Garcia, Amadeo Munoz| | en_UK |
local.rioxx.author | Smith, Ken| | en_UK |
local.rioxx.author | Gallagher, Iain J|0000-0002-8630-7235 | en_UK |
local.rioxx.author | Szewczyk, Nathaniel J| | en_UK |
local.rioxx.author | Cleasby, Mark E| | en_UK |
local.rioxx.author | Atherton, Philip J| | en_UK |
local.rioxx.project | Project ID unknown|Medical Research Council|http://dx.doi.org/10.13039/501100000265 | en_UK |
local.rioxx.freetoreaddate | 2020-08-31 | en_UK |
local.rioxx.licence | http://creativecommons.org/licenses/by/4.0/|2020-08-31| | en_UK |
local.rioxx.filename | 1-s2.0-S2212877820301332-main.pdf | en_UK |
local.rioxx.filecount | 1 | en_UK |
local.rioxx.source | 2212-8778 | en_UK |
Appears in Collections: | Faculty of Health Sciences and Sport Journal Articles |
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1-s2.0-S2212877820301332-main.pdf | Fulltext - Published Version | 3.47 MB | Adobe PDF | View/Open |
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