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首页> 外文期刊>American Journal of Physiology >Wnt4 activates the canonical beta-catenin pathway and regulates negatively myostatin: functional implication in myogenesis.
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Wnt4 activates the canonical beta-catenin pathway and regulates negatively myostatin: functional implication in myogenesis.

机译:Wnt4激活规范β-连环蛋白途径,并调节负性肌醇素:肌瘤中的功能含义。

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摘要

Expression of Wnt proteins is known to be important for developmental processes such as embryonic pattern formation and determination of cell fate. Previous studies have shown that Wn4 was involved in the myogenic fate of somites, in the myogenic proliferation, and differentiation of skeletal muscle. However, the function of this factor in adult muscle homeostasis remains not well understood. Here, we focus on the roles of Wnt4 during C2C12 myoblasts and satellite cells differentiation. We analyzed its myogenic activity, its mechanism of action, and its interaction with the anti-myogenic factor myostatin during differentiation. Established expression profiles indicate clearly that both types of cells express a few Wnts, and among these, only Wnt4 was not or barely detected during proliferation and was strongly induced during differentiation. As attested by myogenic factors expression pattern analysis and fusion index determination, overexpression of Wnt4 protein caused a strong increase in satellite cells and C2C12 myoblast differentiation leading to hypertrophic myotubes. By contrast, exposure of satellite and C2C12 cells to small interfering RNA against Wnt4 strongly diminished this process, confirming the myogenic activity of Wnt4. Moreover, we reported that Wnt4, which is usually described as a noncanonical Wnt, activates the canonical beta-catenin pathway during myogenic differentiation in both cell types and that this factor regulates negatively the expression of myostatin and the regulating pathways associated with myostatin. Interestingly, we found that recombinant myostatin was sufficient to antagonize the differentiation-promoting activities of Wnt4. Reciprocally, we also found that the genetic deletion of myostatin renders the satellite cells refractory to the hypertrophic effect of Wnt4. These results suggest that the Wnt4-induced decrease of myostatin plays a functional role during hypertrophy. We propose that Wnt4 protein may be a key factor that regulates the extent of differentiation in satellite and C2C12 cells.
机译:已知Wnt蛋白的表达对于诸如胚胎图案形成和细胞命运的测定等发育方法是重要的。以前的研究表明,WN4参与了Sumites的肌遗传学,在肌原遗传性增殖和骨骼肌的分化中。然而,该因子在成人肌肉稳态中的功能仍未得到很好的理解。在这里,我们专注于Wnt4在C2C12肌细胞和卫星细胞分化期间的作用。我们分析了其肌原遗传学活性,其作用机制,以及在分化期间与抗源性因子肌抑素的相互作用。建立的表达谱表明清楚的是,两种类型的细胞表达了几种WNT,其中,在增殖期间只有WNT4没有或几乎没有检测到,并且在分化期间强烈诱导。如肌原遗传因素表达模式分析和融合指数测定,WNT4蛋白的过度表达导致卫星细胞的强烈增加,C2C12肌细胞分化导致肥厚肌管。相比之下,卫星和C2C12细胞暴露于小干扰RNA对WNT4的抗扰度强烈减少了该过程,证实了Wnt4的肌原源性活性。此外,我们报道了通常被描述为非甘露酰基Wnt的Wnt4在两种细胞类型中的肌遗传分化期间激活规范β-连环蛋白途径,并且该因子调节肌球蛋白的表达和与肌肌肤相关的调节途径的表达。有趣的是,我们发现重组肌肉素足以拮抗Wnt4的分化促进活性。相互作用,我们还发现肌肉抑制素的遗传缺失使卫星细胞难以WNT4的肥厚效应。这些结果表明,WNT4诱导的肌肉抑制素降低在肥大过程中起作用作用。我们提出WNT4蛋白质可以是调节卫星和C2C12细胞中分化程度的关键因素。

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