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The beneficial effect of chronic muscular exercise on muscle fragility is increased by Prox1 gene transfer in dystrophic mdx muscle

Alexandra Monceau, Clément Delacroix, Mégane Lemaitre, Gaelle Revet, Denis Furling, Onnik Agbulut, Arnaud Klein, View ORCID ProfileArnaud Ferry
doi: https://doi.org/10.1101/2021.07.22.453435
Alexandra Monceau
1Sorbonne Université, Inserm, Association of Myology Institute, Myology Center of Research, UMRS974, F-75013 Paris, France
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Clément Delacroix
1Sorbonne Université, Inserm, Association of Myology Institute, Myology Center of Research, UMRS974, F-75013 Paris, France
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Mégane Lemaitre
2Sorbonne Université, UMS 28, F-75013 Paris, France
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Gaelle Revet
3Sorbonne Université, Institute of Paris-Seine Biology, UMR CNRS 8256, Inserm ERL U1164, Biological Adaptation and Ageing, 75005, Paris, France
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Denis Furling
1Sorbonne Université, Inserm, Association of Myology Institute, Myology Center of Research, UMRS974, F-75013 Paris, France
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Onnik Agbulut
3Sorbonne Université, Institute of Paris-Seine Biology, UMR CNRS 8256, Inserm ERL U1164, Biological Adaptation and Ageing, 75005, Paris, France
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Arnaud Klein
1Sorbonne Université, Inserm, Association of Myology Institute, Myology Center of Research, UMRS974, F-75013 Paris, France
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Arnaud Ferry
1Sorbonne Université, Inserm, Association of Myology Institute, Myology Center of Research, UMRS974, F-75013 Paris, France
4Université de Paris, Paris, F-75006 France
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  • ORCID record for Arnaud Ferry
  • For correspondence: arnaud.ferry@upmc.fr
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Abstract

Purpose Greater muscle fragility is thought to cause the exhaustion of the muscle stem cells during successive degeneration/repair cycles, leading to muscle wasting and weakness in Duchenne muscular dystrophy. Chronic voluntary exercise can partially reduce the susceptibility to contraction induced-muscle injury, i.e., muscle fragility, as shown by a reduced immediate maximal force drop following lengthening contractions, in the dystrophic mdx mice. Here, we studied the effect of Prospero-related homeobox factor 1 gene (Prox1) transfer (overexpression) on fragility in chronically exercised mdx mice, because Prox1 promotes slower type fibres in healthy mice and slower fibres are less fragile in mdx muscle.

Methods mdx mice received or not Prox1 transfer into the tibialis anterior muscle and performed voluntary running into a wheel during 1 month. We also performed Prox1 transfer in sedentary mdx mice. In situ maximal force production of the muscle in response to nerve stimulation was assessed before, during and after 10 lengthening contractions. Molecular and cellular parameters were also evaluated.

Results Interestingly, Prox1 transfer reduced the force drop following lengthening contractions in exercised mdx mice (p < 0.05 to 0.01), but not in sedentary mdx mice. It also increased the muscle expression of Myh7 (p < 0.001), MHC-2x (p < 0.01) and Trpc1 (p < 0.01), whereas it reduced that one of Myh4 (p < 0.001) and MHC-2b (p < 0.01) in exercised mdx mice. Moreover, Prox1 transfer decreased the maximal force (p < 0.01) before lengthening contraction in exercised mdx mice (p < 0.01), and reduced muscle weight (p < 0.0001) despite increased Mstn expression (p < 0.001).

Conclusion Our results indicate that the beneficial effect of Prox1 transfer on muscle fragility is only observed in chronically exercised mdx mice. Thus, Prox1 transfer combined to chronic exercise have the potential to substantially slow the progression of the dystrophic disease in the long term.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted July 22, 2021.
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The beneficial effect of chronic muscular exercise on muscle fragility is increased by Prox1 gene transfer in dystrophic mdx muscle
Alexandra Monceau, Clément Delacroix, Mégane Lemaitre, Gaelle Revet, Denis Furling, Onnik Agbulut, Arnaud Klein, Arnaud Ferry
bioRxiv 2021.07.22.453435; doi: https://doi.org/10.1101/2021.07.22.453435
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The beneficial effect of chronic muscular exercise on muscle fragility is increased by Prox1 gene transfer in dystrophic mdx muscle
Alexandra Monceau, Clément Delacroix, Mégane Lemaitre, Gaelle Revet, Denis Furling, Onnik Agbulut, Arnaud Klein, Arnaud Ferry
bioRxiv 2021.07.22.453435; doi: https://doi.org/10.1101/2021.07.22.453435

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