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TRAF6 regulates satellite stem cell self-renewal and function during regenerative myogenesis

机译:TRAF6在再生肌发生过程中调节卫星干细胞的自我更新和功能

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摘要

Satellite cells are a stem cell population within adult muscle and are responsible for myofiber regeneration upon injury. Satellite cell dysfunction has been shown to underlie the loss of skeletal muscle mass in many acquired and genetic muscle disorders. The transcription factor paired box-protein-7 (PAX7) is indispensable for supplementing the reservoir of satellite cells and driving regeneration in normal and diseased muscle. TNF receptor–associated factor 6 (TRAF6) is an adaptor protein and an E3 ubiquitin ligase that mediates the activation of multiple cell signaling pathways in a context-dependent manner. Here, we demonstrated that TRAF6-mediated signaling is critical for homeostasis of satellite cells and their function during regenerative myogenesis. Selective deletion of Traf6 in satellite cells of adult mice led to profound muscle regeneration defects and dramatically reduced levels of PAX7 and late myogenesis markers. TRAF6 was required for the activation of MAPKs ERK1/2 and JNK1/2, which in turn activated the transcription factor c-JUN, which binds the Pax7 promoter and augments Pax7 expression. Moreover, TRAF6/c-JUN signaling repressed the levels of the microRNAs miR-1 and miR-206, which promote differentiation, to maintain PAX7 levels in satellite cells. We also determined that satellite cell–specific deletion of Traf6 exaggerates the dystrophic phenotype in the mdx (a mouse model of Duchenne muscular dystrophy) mouse by blunting the regeneration of injured myofibers. Collectively, our study reveals an essential role for TRAF6 in satellite stem cell function.
机译:卫星细胞是成年肌肉内的干细胞种群,负责损伤后肌纤维的再生。在许多获得性遗传性遗传疾病中,卫星细胞功能障碍已被证明是骨骼肌质量丧失的基础。转录因子配对盒蛋白7(PAX7)对补充卫星细胞的储库并促进正常和患病肌肉的再生必不可少。 TNF受体相关因子6(TRAF6)是一种衔接蛋白和一种E3泛素连接酶,以上下文相关的方式介导多种细胞信号通路的激活。在这里,我们证明了TRAF6介导的信号传导对于再生细胞的稳态及其在再生肌发生过程中的功能至关重要。成年小鼠卫星细胞中Traf6的选择性缺失导致了严重的肌肉再生缺陷,并显着降低了PAX7和晚期成肌标志物的水平。 TRAF6是激活MAPK ERK1 / 2和JNK1 / 2所必需的,后者又激活了转录因子c-JUN,后者与Pax7启动子结合并增强Pax7表达。此外,TRAF6 / c-JUN信号传导抑制了促进分化的microRNA miR-1和miR-206的水平,从而维持了卫星细胞中PAX7的水平。我们还确定了卫星细胞特异的Traf6缺失通过钝化受损肌纤维的再生而夸大了mdx(杜兴氏肌肉营养不良的小鼠模型)小鼠的营养不良表型。总的来说,我们的研究揭示了TRAF6在卫星干细胞功能中的重要作用。

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