INRA, UMR866 Dynamique Musculaire et Métabolisme, 2 place Viala, Université Montpellier, F-34060, Montpellier, France.
Neuromuscular Research Center, Departments of Neurology and Biomedicine, Pharmazentrum, University of Basel, 4056, Basel, Switzerland.
Sci Rep. 2019 Aug 22;9(1):12249. doi: 10.1038/s41598-019-48703-2.
Thyroid hormone is a major regulator of skeletal muscle development and repair, and also a key regulator of mitochondrial activity. We have previously identified a 43 kDa truncated form of the nuclear T3 receptor TRα1 (p43) which stimulates mitochondrial activity and regulates skeletal muscle features. However, its role in skeletal muscle regeneration remains to be addressed. To this end, we performed acute muscle injury induced by cardiotoxin in mouse tibialis in two mouse models where p43 is overexpressed in or depleted from skeletal muscle. The measurement of muscle fiber size distribution at different time point (up to 70 days) upon injury lead us to unravel requirement of the p43 signaling pathway for satellite cells dependent muscle regeneration; strongly delayed in the absence of p43; whereas the overexpression of the receptor enhances of the regeneration process. In addition, we found that satellite cells derived from p43-Tg mice display higher proliferation rates when cultured in vitro when compared to control myoblasts, whereas p43-/- satellites shows reduced proliferation capacity. These finding strongly support that p43 plays an important role in vivo by controling the duration of skeletal muscle regeneration after acute injury, possibly through the regulation of mitochondrial activity and myoblasts proliferation.
甲状腺激素是骨骼肌发育和修复的主要调节因子,也是线粒体活性的关键调节因子。我们之前已经鉴定出核 T3 受体 TRα1(p43)的 43kDa 截断形式,它能刺激线粒体活性并调节骨骼肌特征。然而,其在骨骼肌再生中的作用仍有待解决。为此,我们在两种过表达或耗尽骨骼肌中 p43 的小鼠模型中,使用心脏毒素诱导小鼠胫骨前肌急性损伤。在损伤后的不同时间点(长达 70 天)测量肌纤维大小分布,我们揭示了 p43 信号通路对卫星细胞依赖性肌肉再生的要求;在缺乏 p43 的情况下严重延迟;而受体的过表达则增强了再生过程。此外,我们发现与对照成肌细胞相比,源自 p43-Tg 小鼠的卫星细胞在体外培养时显示出更高的增殖率,而 p43-/-卫星细胞显示出较低的增殖能力。这些发现有力地支持了 p43 通过调节线粒体活性和成肌细胞增殖,在体内控制急性损伤后骨骼肌再生的持续时间方面发挥重要作用。