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Cripto regulates skeletal muscle regeneration and modulates satellite cell determination by antagonizing myostatin

机译:Cripto通过拮抗肌肉生长抑制素调节骨骼肌再生并调节卫星细胞测定

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摘要

Skeletal muscle regeneration mainly depends on satellite cells, a population of resident muscle stem cells. However, our understanding of the molecular mechanisms underlying satellite cell activation is still largely undefined. Here, we show that Cripto, a regulator of early embryogenesis, is a novel regulator of muscle regeneration and satellite cell progression toward the myogenic lineage. Conditional inactivation of cripto in adult satellite cells compromises skeletal muscle regeneration, whereas gain of function of Cripto accelerates regeneration, leading to muscle hypertrophy. Moreover, weprovide evidence that Criptomodulatesmyogenic cell determination and promotes proliferation by antagonizing the TGF-β ligand myostatin. Our data provide unique insights into the molecular and cellular basis of Cripto activity in skeletal muscle regeneration and raise previously undescribed implications for stem cell biology and regenerative medicine.
机译:骨骼肌的再生主要取决于卫星细胞,即常驻的肌肉干细胞。但是,我们对卫星细胞激活的分子机制的了解仍然很不确定。在这里,我们显示Cripto,早期胚胎发生的调节剂,是肌肉再生和卫星细胞向成肌谱系发展的新型调节剂。成年卫星细胞中cripto的条件失活会损害骨骼肌的再生,而Cripto功能的获得会加速再生,导致肌肉肥大。此外,我们提供的证据表明,Cripto调节成肌细胞的测定并通过拮抗TGF-β配体肌生长抑制素来促进增殖。我们的数据提供了关于骨骼肌再生中Cripto活性的分子和细胞基础的独特见解,并提出了干细胞生物学和再生医学的先前未描述的含义。

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