Alterations of the TGFb-sequestration complex member ADAMTSL1 levels are associated with muscular defects and rhabdomyosarcoma aggressiveness

Author:

Bertrand-Chapel Adrien,Meyer Swann,Juban Gaëtan,Kneppers Anita,Huchedé Paul,Gallerne Cindy,Benayoun Ruth,Cohen Enzo,Lopez-Gonzales Alejandro,Larbi Sabrina Ben,Creveaux Marion,Vaille Lucile,Bouvier Amélie,Théodore Marine,Broutier Laura,Dutour Aurélie,Cordier-Bussat Martine,Blay Jean-YvesORCID,Streichenberger Nathalie,Picard Cécile,Corradini Nadège,Allamand Valérie,Mounier Rémi,Castets Perrine,Castets Marie

Abstract

ABSTRACTRhabdomyosarcoma (RMS) is the most frequent form of paediatric soft-tissue sarcoma and remains a medical challenge, holding in failure current therapeutic strategies. RMS shares histological features with cells of the muscle lineage and this cancer is thought to arise from malignant transformation of myogenic precursors. It has been proposed that RMS and myogenesis could represent the “Jekyll and Hyde” of skeletal muscle. The underlying idea is that some early steps of myogenic differentiation are blocked in RMS, and that understanding how the normal process has gone awry could help to decipher the biological underpinnings of tumorigenesis and tumor escape.It is widely agreed that extracellular matrix (ECM) interferes in skeletal muscle regeneration and that defects in ECM components are clinically significant. The challenge is now to decipher actors and mechanisms responsible for the transmission of signals to muscle cells and the subsequent alterations that could be associated with RMS.Using an original transgenic mice model, we show here that ADAMTSL1 is involved in skeletal muscle regeneration. As previously reported for other members of its family, ADAMTSL1 is part of the TGF-β-ECM-sequestering complex and likely positively regulates TGF-β-pathway activity. Last, we observed that ADAMTSL1 expression behaves as a strong prognostic factor in the aggressive fusion-positive RMS and correlates with a neural-like phenotype of tumor cells, resulting from gain of SMAD2/3/4 targets.

Publisher

Cold Spring Harbor Laboratory

Reference53 articles.

1. Myogenesis and Rhabdomyosarcoma

2. Brain metastases

3. Muscular dystrophies share pathogenetic mechanisms with muscle sarcomas

4. Dystrophindeficient mdx mice display a reduced life span and are susceptible to spontaneous rhabdomyosarcoma;FASEB J. Off. Publ. Fed. Am. Soc. Exp. Biol,2007

5. Rhabdomyosarcoma in a Patient With Duchenne Muscular Dystrophy: A Possible Association;Child Neurol. Open,2021

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