Extraocular muscle stem cells exhibit distinct cellular properties associated with non-muscle molecular signatures - Institut Pasteur
Article Dans Une Revue Development (Cambridge, England) Année : 2024

Extraocular muscle stem cells exhibit distinct cellular properties associated with non-muscle molecular signatures

Résumé

Skeletal muscle stem cells (MuSCs) are recognised as functionally heterogeneous. Cranial MuSCs are reported to have greater proliferative and regenerative capacity when compared with those in the limb. A comprehensive understanding of the mechanisms underlying this functional heterogeneity is lacking. Here, we have used clonal analysis, live imaging and single cell transcriptomic analysis to identify crucial features that distinguish extraocular muscle (EOM) from limb muscle stem cell populations. A MyogeninntdTom reporter showed that the increased proliferation capacity of EOM MuSCs correlates with deferred differentiation and lower expression of the myogenic commitment gene Myod. Unexpectedly, EOM MuSCs activated in vitro expressed a large array of extracellular matrix components typical of mesenchymal non-muscle cells. Computational analysis underscored a distinct co-regulatory module, which is absent in limb MuSCs, as driver of these features. The EOM transcription factor network, with Foxc1 as key player, appears to be hardwired to EOM identity as it persists during growth, disease and in vitro after several passages. Our findings shed light on how high-performing MuSCs regulate myogenic commitment by remodelling their local environment and adopting properties not generally associated with myogenic cells.
Fichier principal
Vignette du fichier
Document de travail.pdf (17.22 Mo) Télécharger le fichier
Origine Fichiers produits par l'(les) auteur(s)
Licence

Dates et versions

pasteur-04779435 , version 1 (12-03-2023)
pasteur-04779435 , version 2 (14-11-2024)

Licence

Identifiants

Citer

Daniela Di Girolamo, Maria Benavente-Diaz, Melania Murolo, Alexandre Grimaldi, Priscilla Thomas Lopes, et al.. Extraocular muscle stem cells exhibit distinct cellular properties associated with non-muscle molecular signatures. Development (Cambridge, England), 2024, 151 (4), pp.dev202144. ⟨10.1242/dev.202144⟩. ⟨pasteur-04779435v2⟩
120 Consultations
197 Téléchargements

Altmetric

Partager

More