Unit of Biology, Genetics and Biochemistry, Department of Movement, Human and Health Sciences, University of Rome "Foro Italico", Rome, Italy.
IRCCS SDN Foundation, Naples, Italy.
Sci Rep. 2017 Aug 3;7(1):7219. doi: 10.1038/s41598-017-07575-0.
Thioredoxin reductase 1 (TrxR1) is a selenocysteine-containing protein involved in cellular redox homeostasis which is downregulated in skeletal muscle differentiation. Here we show that TrxR1 decrease occurring during myogenesis is functionally involved in the coordination of this cellular process. Indeed, TrxR1 depletion reduces myoblasts growth by inducing an early myogenesis -related gene expression pattern which includes myogenin and Myf5 up-regulation and Cyclin D1 decrease. On the contrary, the overexpression of TrxR1 during differentiation delays myogenic process, by negatively affecting the expression of Myogenin and MyHC. Moreover, we found that miR-23a and miR-23b - whose expression was increased in the early stage of C2C12 differentiation - are involved in the regulation of TrxR1 expression through their direct binding to the 3' UTR of TrxR1 mRNA. Interestingly, the forced inhibition of miR-23a and miR-23b during C2C12 differentiation partially rescues TrxR1 levels and delays the expression of myogenic markers, suggesting the involvement of miR-23 in myogenesis via TrxR1 repression. Taken together, our results depict for the first time a novel molecular axis, which functionally acts in skeletal muscle differentiation through the modulation of TrxR1 by miR-23.
硫氧还蛋白还原酶 1(TrxR1)是一种含硒半胱氨酸的蛋白质,参与细胞氧化还原稳态,在骨骼肌分化中下调。在这里,我们表明,在成肌过程中发生的 TrxR1 减少与协调这个细胞过程的功能有关。事实上,TrxR1 的耗竭通过诱导早期成肌相关基因表达模式,包括肌生成素和 Myf5 的上调和 Cyclin D1 的下调,从而减少成肌细胞的生长。相反,在分化过程中 TrxR1 的过表达通过负调控 Myogenin 和 MyHC 的表达而延迟成肌过程。此外,我们发现,miR-23a 和 miR-23b——其表达在 C2C12 分化的早期阶段增加——通过直接结合 TrxR1 mRNA 的 3'UTR 参与 TrxR1 表达的调节。有趣的是,在 C2C12 分化过程中强制抑制 miR-23a 和 miR-23b 部分挽救了 TrxR1 水平并延迟了成肌标志物的表达,表明 miR-23 通过 TrxR1 抑制参与成肌作用。总之,我们的研究结果首次描绘了一个新的分子轴,该轴通过 miR-23 对 TrxR1 的调节在骨骼肌分化中发挥功能。