Impaired aerobic capacity and premature fatigue preceding muscle weakness in the skeletal muscle Tfam-knockout mouse model

Author:

Chatel Benjamin12ORCID,Ducreux Sylvie3ORCID,Harhous Zeina3ORCID,Bendridi Nadia4ORCID,Varlet Isabelle1ORCID,Ogier Augustin C.5ORCID,Bernard Monique1ORCID,Gondin Julien6ORCID,Rieusset Jennifer3ORCID,Westerblad Håkan7ORCID,Bendahan David1ORCID,Gineste Charlotte1ORCID

Affiliation:

1. Aix-Marseille Université, CRMBM UMR CNRS 7339, 13385 Marseille, France

2. CellMade, 73370 Le-Bourget-du-Lac, France

3. CarMeN Laboratory, UMR INSERM U1060/INRA U1397, Université Claude Bernard Lyon1, F-69310 Pierre-Bénite et F-69500 Bron, France

4. CarMeN Laboratory, INSERM, INRA, INSA Lyon, Université Claude Bernard Lyon 1, 69600 Oullins, France

5. Aix-Marseille Université, Université de Toulon, CNRS, LIS, 13397 Marseille, France

6. Institut NeuroMyoGène, UMR CNRS 5310 - INSERM U1217, Université Claude Bernard Lyon 1, F-69008 Lyon, France

7. Department of Physiology and Pharmacology, Karolinska Institutet, 17177 Stockholm, Sweden

Abstract

ABSTRACT Mitochondrial diseases are genetic disorders that lead to impaired mitochondrial function, resulting in exercise intolerance and muscle weakness. In patients, muscle fatigue due to defects in mitochondrial oxidative capacities commonly precedes muscle weakness. In mice, deletion of the fast-twitch skeletal muscle-specific Tfam gene (Tfam KO) leads to a deficit in respiratory chain activity, severe muscle weakness and early death. Here, we performed a time-course study of mitochondrial and muscular dysfunctions in 11- and 14-week-old Tfam KO mice, i.e. before and when mice are about to enter the terminal stage, respectively. Although force in the unfatigued state was reduced in Tfam KO mice compared to control littermates (wild type) only at 14 weeks, during repeated submaximal contractions fatigue was faster at both ages. During fatiguing stimulation, total phosphocreatine breakdown was larger in Tfam KO muscle than in wild-type muscle at both ages, whereas phosphocreatine consumption was faster only at 14 weeks. In conclusion, the Tfam KO mouse model represents a reliable model of lethal mitochondrial myopathy in which impaired mitochondrial energy production and premature fatigue occur before muscle weakness and early death.

Funder

AFM-Téléthon

France Life Imaging network

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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