脂肪生成
旁分泌信号
自分泌信号
肌发生
Wnt信号通路
细胞生物学
祖细胞
生物
干细胞
信号转导
连环蛋白
间充质干细胞
内科学
心肌细胞
受体
医学
生物化学
作者
Alessio Reggio,Marco Rosina,Alessandro Palma,Andrea Cerquone Perpetuini,Lucia Lisa Petrilli,Cesare Gargioli,Claudia Fuoco,Elisa Micarelli,Giulio Giuliani,Mauro Cerretani,Alberto Bresciani,Francesca Sacco,Luisa Castagnoli,Gianni Cesareni
标识
DOI:10.1038/s41418-020-0551-y
摘要
Fibro/Adipogenic Progenitors (FAPs) are muscle-interstitial progenitors mediating pro-myogenic signals that are critical for muscle homeostasis and regeneration. In myopathies, the autocrine/paracrine constraints controlling FAP adipogenesis are released causing fat infiltrates. Here, by combining pharmacological screening, high-dimensional mass cytometry and in silico network modeling with the integration of single-cell/bulk RNA sequencing data, we highlighted the canonical WNT/GSK/β-catenin signaling as a crucial pathway modulating FAP adipogenesis triggered by insulin signaling. Consistently, pharmacological blockade of GSK3, by the LY2090314 inhibitor, stabilizes β-catenin and represses PPARγ expression abrogating FAP adipogenesis ex vivo while limiting fatty degeneration in vivo. Furthermore, GSK3 inhibition improves the FAP pro-myogenic role by efficiently stimulating, via follistatin secretion, muscle satellite cell (MuSC) differentiation into mature myotubes. Combining, publicly available single-cell RNAseq datasets, we characterize FAPs as the main source of WNT ligands inferring their potential in mediating autocrine/paracrine responses in the muscle niche. Lastly, we identify WNT5a, whose expression is impaired in dystrophic FAPs, as a crucial WNT ligand able to restrain the detrimental adipogenic differentiation drift of these cells through the positive modulation of the β-catenin signaling.
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