Molecular, Histological, and Functional Changes in Acta1-MCM;FLExDUX4/+ Mice

Archive ouverte

Sohn, Solene | Reid, Sophie | Bowen, Maximilien | Corbex, Emilio | Le Gall, Laura | Sidlauskaite, Eva | Hourdé, Christophe | Morel, Baptiste | Mariot, Virginie | Dumonceaux, Julie

Edité par CCSD ; MDPI -

International audience. DUX4 is the major gene responsible for facioscapulohumeral dystrophy (FSHD). Several mouse models expressing DUX4 have been developed, the most commonly used by academic laboratories being ACTA1-MCM/FLExDUX4. In this study, molecular and histological modifications in the tibialis anterior and quadriceps muscles were investigated in this model at different time points. We investigated several changes that could be used as markers of therapeutic efficacy. Our results confirm the progressive muscular dystrophy previously described but also highlight biases associated with tamoxifen injections and the complexity of choosing the genes used to calculate a DUX4-pathway gene composite score. We also developed a comprehensive force test that better reflects the movements made in everyday life. This functional force–velocity–endurance model, which describes the force production capacities at all velocity and fatigue levels, was applied on 12–13-week-old animals without tamoxifen. Our data highlight that previously unsuspected muscle properties are also affected by the expression of DUX4, leading to a weaker muscle with a lower initial muscle force but with preserved power and endurance capacity. Importantly, this force–velocity–endurance approach can be used in humans for clinical evaluations.

Consulter en ligne

Suggestions

Du même auteur

A comprehensive functional force velocity endurance (FoVE ) model reveals unsuspected muscle properties affected by the expression of DUX4

Archive ouverte | Sohn, Solene | CCSD

International audience. Measurements of muscle function is crucial to the assessment of potential treatments for muscular diseases To date, several force tests have been proposed in the literature such as the grip s...

Muscle cells of sporadic amyotrophic lateral sclerosis patients secrete neurotoxic vesicles

Archive ouverte | Le Gall, Laura | CCSD

International audience. Background: The cause of the motor neuron (MN) death that drives terminal pathology in amyotrophic lateral sclerosis (ALS) remains unknown, and it is thought that the cellular environment of ...

Downregulation of myostatin pathway in neuromuscular diseases may explain challenges of anti-myostatin therapeutic approaches

Archive ouverte | Mariot, Virginie | CCSD

International audience. Abstract Muscular dystrophies are characterized by weakness and wasting of skeletal muscle tissues. Several drugs targeting the myostatin pathway have been used in clinical trials to increase...

Chargement des enrichissements...