Fu Dechen, Lala-Tabbert Neena, Lee Hwabin, Wiper-Bergeron Nadine
From the Department of Cellular and Molecular Medicine and.
Graduate Program in Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa, Ontario K1H 8M5, Canada.
J Biol Chem. 2015 Apr 17;290(16):10200-7. doi: 10.1074/jbc.M115.638577. Epub 2015 Feb 26.
Myogenesis is a tightly regulated differentiation process during which precursor cells express in a coordinated fashion the myogenic regulatory factors, while down-regulating the satellite cell marker Pax7. CCAAT/Enhancer-binding protein β (C/EBPβ) is also expressed in satellite cells and acts to maintain the undifferentiated state by stimulating Pax7 expression and by triggering a decrease in MyoD protein expression. Herein, we show that C/EBPβ protein is rapidly down-regulated upon induction of myogenesis and this is not due to changes in Cebpb mRNA expression. Rather, loss of C/EBPβ protein is accompanied by an increase in Mdm2 expression, an E3 ubiquitin ligase. We demonstrate that Mdm2 interacts with, ubiquitinates and targets C/EBPβ for degradation by the 26 S proteasome, leading to increased MyoD expression. Knockdown of Mdm2 expression in myoblasts using a shRNA resulted in high C/EBPβ levels and a blockade of myogenesis, indicating that Mdm2 is necessary for myogenic differentiation. Primary myoblasts expressing the shMdm2 construct were unable to contribute to muscle regeneration when grafted into cardiotoxin-injured muscle. The differentiation defect imposed by loss of Mdm2 could be partially rescued by loss of C/EBPβ, suggesting that the regulation of C/EBPβ turnover is a major role for Mdm2 in myoblasts. Taken together, we provide evidence that Mdm2 regulates entry into myogenesis by targeting C/EBPβ for degradation by the 26 S proteasome.
成肌作用是一个受到严格调控的分化过程,在此过程中,前体细胞以协调的方式表达成肌调节因子,同时下调卫星细胞标志物Pax7。CCAAT/增强子结合蛋白β(C/EBPβ)也在卫星细胞中表达,并通过刺激Pax7表达以及触发MyoD蛋白表达的降低来维持未分化状态。在此,我们表明,在成肌作用诱导后,C/EBPβ蛋白迅速下调,这并非由于Cebpb mRNA表达的变化。相反,C/EBPβ蛋白的缺失伴随着E3泛素连接酶Mdm2表达的增加。我们证明Mdm2与C/EBPβ相互作用,使其泛素化并靶向其通过26S蛋白酶体降解,导致MyoD表达增加。使用短发夹RNA(shRNA)敲低成肌细胞中Mdm2的表达会导致C/EBPβ水平升高和成肌作用受阻,这表明Mdm2对于成肌分化是必需的。表达shMdm2构建体的原代成肌细胞移植到心脏毒素损伤的肌肉中时,无法促进肌肉再生。Mdm2缺失导致的分化缺陷可通过C/EBPβ的缺失得到部分挽救,这表明C/EBPβ周转的调节是Mdm2在成肌细胞中的主要作用。综上所述,我们提供了证据表明Mdm2通过靶向C/EBPβ使其被26S蛋白酶体降解来调节进入成肌作用。