Sun Hong, Li Li, Vercherat Cécile, Gulbagci Neriman Tuba, Acharjee Sujata, Li Jiali, Chung Teng-Kai, Thin Tin Htwe, Taneja Reshma
Department of Molecular, Cell, and Developmental Biology, Mount Sinai School of Medicine, New York, NY 10029, USA.
J Cell Biol. 2007 May 21;177(4):647-57. doi: 10.1083/jcb.200609007. Epub 2007 May 14.
Satellite cells play a critical role in skeletal muscle regeneration in response to injury. Notch signaling is vital for satellite cell activation and myogenic precursor cell expansion but inhibits myogenic differentiation. Thus, precise spatial and temporal regulation of Notch activity is necessary for efficient muscle regeneration. We report that the basic helix-loop-helix transcription factor Stra13 modulates Notch signaling in regenerating muscle. Upon injury, Stra13(-/-) mice exhibit increased cellular proliferation, elevated Notch signaling, a striking regeneration defect characterized by degenerated myotubes, increased mononuclear cells, and fibrosis. Stra13(-/-) primary myoblasts also exhibit enhanced Notch activity, increased proliferation, and defective differentiation. Inhibition of Notch signaling ex vivo and in vivo ameliorates the phenotype of Stra13(-/-) mutants. We demonstrate in vitro that Stra13 antagonizes Notch activity and reverses the Notch-imposed inhibition of myogenesis. Thus, Stra13 plays an important role in postnatal myogenesis by attenuating Notch signaling to reduce myoblast proliferation and promote myogenic differentiation.
卫星细胞在骨骼肌损伤后的再生过程中发挥着关键作用。Notch信号通路对于卫星细胞的激活和肌源性前体细胞的扩增至关重要,但会抑制肌源性分化。因此,对Notch活性进行精确的时空调控对于高效的肌肉再生是必要的。我们报道,碱性螺旋-环-螺旋转录因子Stra13在再生肌肉中调节Notch信号通路。损伤后,Stra13基因敲除小鼠表现出细胞增殖增加、Notch信号增强、以肌管退化、单核细胞增多和纤维化为特征的显著再生缺陷。Stra13基因敲除的原代成肌细胞也表现出Notch活性增强、增殖增加和分化缺陷。体内外抑制Notch信号通路可改善Stra13基因敲除突变体的表型。我们在体外证明,Stra13拮抗Notch活性并逆转Notch对肌生成的抑制作用。因此,Stra13通过减弱Notch信号通路来减少成肌细胞增殖并促进肌源性分化,从而在出生后肌生成中发挥重要作用。