Collagen VI regulates satellite cell self-renewal and muscle regeneration

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作者
Anna Urciuolo
Marco Quarta
Valeria Morbidoni
Francesca Gattazzo
Sibilla Molon
Paolo Grumati
Francesca Montemurro
Francesco Saverio Tedesco
Bert Blaauw
Giulio Cossu
Giovanni Vozzi
Thomas A. Rando
Paolo Bonaldo
机构
[1] University of Padova,Department of Biomedical Sciences
[2] Glenn Laboratories for the Biology of Aging,Department of Neurology and Neurological Sciences
[3] Stanford University School of Medicine,Interdepartmental Research Center E. Piaggio
[4] University of Pisa,Department of Cell and Developmental Biology
[5] University College London,undefined
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Adult muscle stem cells, or satellite cells have essential roles in homeostasis and regeneration of skeletal muscles. Satellite cells are located within a niche that includes myofibers and extracellular matrix. The function of specific extracellular matrix molecules in regulating SCs is poorly understood. Here, we show that the extracellular matrix protein collagen VI is a key component of the satellite cell niche. Lack of collagen VI in Col6a1–/– mice causes impaired muscle regeneration and reduced satellite cell self-renewal capability after injury. Collagen VI null muscles display significant decrease of stiffness, which is able to compromise the in vitro and in vivo activity of wild-type satellite cells. When collagen VI is reinstated in vivo by grafting wild-type fibroblasts, the biomechanical properties of Col6a1–/– muscles are ameliorated and satellite cell defects rescued. Our findings establish a critical role for an extracellular matrix molecule in satellite cell self-renewal and open new venues for therapies of collagen VI-related muscle diseases.
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