BITOUN Lab

Muscle cell organization and therapy of dominant centronuclear myopathy

  Muscle cell organization and therapy of dominant centronuclear myopathy

Strengthening knowledge on fundamental aspects of muscle biology is one central challenge in order to decipher pathomechanisms and identify targets for therapeutic intervention for neuromuscular disorders. This is particularly true for diseases due to mutations in genes encoding proteins with pleiotropic roles such as autosomal dominant centronuclear myopathy (CNM) due to mutation of the ubiquitously expressed Dynamin 2 (DMN2) involved in endocytosis, intracellular membrane trafficking and cytoskeleton regulation. In this context, the objectives of the team are: i) to dissect fundamental mechanisms of muscle cells, relevant to understand the dominant CNM, and beyond, numerous other neuromuscular disorders, and ii) to develop experimental therapies for the dominant CNM and study the adeno-associated virus (AAV) vectors fate in pathological muscles to optimize AAV-mediated therapies for neuromuscular disorders. With these objectives, we are developing several projects:

– Role of the endocytosis machinery in mechanobiology at the costameres in healthy and pathological muscles with a particular focus on its adhesive properties and the interplay with mechanosensitive pathways. We also want to better understand how alternative splicing events of the endocytosis machinery cooperates, upon differentiation, to govern clathrin structural diversity (Stéphane Vassilopoulos).

– Role of mechanical stress in muscle homeostasis and growth under physiological and pathological conditions, with a particular focus on the force-mediated regulation of plasma membrane and nuclear stiffness and deformations, chromatin and histone modifications, and genetic programs in muscle cells. We also want to determine how muscle differentiation impacts nuclear characteristics (Catherine Coirault).

– The cellular and molecular mechanisms involved in ventilation-induced diaphragm dysfunction in particular during aging, and the muscle dysfunction occurring in patients in intensive care unit (Catherine Coirault and Adrien Bouglé).

– By combining genetic modifications, live imaging, biophysics, cellular and animal models, we aim at deciphering the pivotal influence of the nucleo-cytoskeleton connection on cell phenotype and genome organization in particular in the context of muscle formation and cardiomyopathy (Bruno Cadot).

– Preclinical development of the allele-specific silencing therapy for the dominant CNM and other DNM2-linked diseases and first proof of concept of allele-specific therapy for other dominant diseases. In addition, we want to develop pharmacological therapy for the DNM2-linked CNM patients (Delphine Trochet & Marc Bitoun).

– In order to optimize AAV-based therapies, we want to identify cellular factors impacting the efficiency of AAV-mediated transduction in diseased muscles. We are focusing on mechanisms regulating the AAV intracellular trafficking and to improve AAV-mediated therapies in DMD and CNM animal models by pharmacological co-treatments (Sofia Benkhelifa-Ziyyat).

Team members:

Equipe Bitoun - UMRS 974 - Centre de recherche en myologie
Marc Bitoun

Contact:

Marc Bitoun

NamePositionEmailORCID



185 documents

  • Delphine Trochet, Bernard Prudhon, Maud Beuvin, Cécile Peccate, Stéphanie Lorain, et al.. Allele-specific silencing therapy for Dynamin 2-related dominant centronuclear myopathy. Circulation. Arrhythmia and electrophysiology, 2017, 10 (12), pp.428-431. ⟨10.15252/emmm.201707988⟩. ⟨hal-04001377⟩
  • Philip Dannhauser, Stéphane Camus, Kazuho Sakamoto, L. Amanda Sadacca, Jorge Torres, et al.. CHC22 and CHC17 clathrins have distinct biochemical properties and display differential regulation and function. Journal of Biological Chemistry, 2017, 292 (51), pp.20834-20844. ⟨10.1074/jbc.M117.816256⟩. ⟨hal-03831887⟩
  • Camila F Almeida, Marc Bitoun, Mariz Vainzof. Satellite cell alteration in DNM2-related centronuclear myopathy. Congress of the World Muscle Society, Oct 2017, Saint Malo, France. 2017. ⟨hal-03968329⟩
  • A. Guiraud, N. Couturier, V. Buchman, A. Durieux, D. Arnould, et al.. Sh3kbp1 involvement during skeletal muscle fibers formation: a new candidate for centronuclear myopathies. Congress of the World Muscle Society, Oct 2017, Saint Malo, France. 2017. ⟨hal-03968370⟩
  • M. Garibaldi, J. Rendu, E. Lacene, G. Brochier, M. Beuvin, et al.. Morphological spectrum of RYR1 recessive myopathies: Clinical and genetic correlation.. 22nd International Annual Congress of the World-Muscle-Society (WMS), Oct 2017, Saint Malo, France. Neuromuscular Disorder, 27, pp.S239, 2017, ⟨10.1016/j.nmd.2017.06.518⟩. ⟨hal-03973385⟩
  • A. González-Jamett, X. Baez-Matus, M. Bui, P. Guicheney, N. Romero, et al.. Centronuclear myopathy-causing mutations in dynamin-2 impair actin-dependent trafficking in muscle cells. Congress of the World Muscle Society, Oct 2017, Saint Malo, France. 2017. ⟨hal-03968391⟩
  • M Garibaldi, J Rendu, E Lacene, G Brochier, Maud Bauvin, et al.. Morphological spectrum of RYR1 recessive myopathies: clinical and genetic correlation. Congress of the World Muscle Society, Oct 2017, Saint Malo, France. 2017. ⟨hal-03968355⟩
  • Alexandre Ghenassia, David-Alexandre Gross, Stéphanie Lorain, Fabiola Tros, Dominique Urbain, et al.. Intradermal Immunization with rAAV1 Vector Induces Robust Memory CD8+ T Cell Responses Independently of Transgene Expression in DCs. Molecular Therapy, 2017, 25 (10), pp.2309-2322. ⟨10.1016/j.ymthe.2017.06.019⟩. ⟨hal-03846034⟩
  • William Roman, João Martins, Filomena Carvalho, Raphael Voituriez, Jasmine Abella, et al.. Myofibril contraction and crosslinking drive nuclear movement to the periphery of skeletal muscle. Nature Cell Biology, 2017, 19 (10), pp.1189-1201. ⟨10.1038/ncb3605⟩. ⟨hal-03687566⟩
  • Daniel Owens, Julien Messeant, G Herledan, Arnaud Ferry, Anne Bertrand, et al.. Nuclear envelope protein lamin A/C is a crucial mechanosensory component for skeletal muscle plasticity. International Congress of Neuromuscular Disorders, Sep 2017, Ottawa, Canada. 2017. ⟨hal-03968419⟩
Agence nationale de la recherche
Inserm Transfert
SU Emergence
Myotubular trust
USEK
Campus France

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