College of Life Sciences, Shihezi University, Xinjiang 832003, China.
College of Animal Science and Technology, Shihezi University, Xinjiang 832003, China.
Cells. 2019 Jun 19;8(6):616. doi: 10.3390/cells8060616.
CircRNA is a type of closed circular non-coding RNA formed by reverse splicing and plays an important role in regulating the growth and development of plants and animals. To investigate the function of circ-FoxO3 in mouse myoblast cells' (C2C12) differentiation and proliferation, we used RT-qPCR to detect the expression level of circ-FoxO3 in mouse myoblast cells at different densities and different differentiation stages, and the specific interference fragment was used to inhibit the expression level of circ-FoxO3 in myoblast cells to observe its effect on myoblast cells proliferation and differentiation. We found that the expression level of circ-FoxO3 in myoblast cells increased with the prolongation of myoblast cells differentiation time, and its expression level decreased with the proliferation of myoblast cells. At the same time, we found that the differentiation ability of the cells was significantly increased ( < 0.05), but the cell proliferation was unchanged ( > 0.05) after inhibiting the expression of circ-FoxO3 in myoblast cells. Combining the results of bioinformatics analysis and the dual luciferase reporter experiment, we found that circ-FoxO3 is a sponge of miR-138-5p, which regulates muscle differentiation. Our study shows that circ-FoxO3 can inhibit the differentiation of C2C12 myoblast cells and lay a scientific foundation for further study of skeletal muscle development at circRNA levels.
环状 RNA 是一种由反向剪接形成的闭合环状非编码 RNA,在动植物的生长发育中发挥着重要的调控作用。为了研究 circ-FoxO3 在小鼠成肌细胞(C2C12)分化和增殖中的功能,我们使用 RT-qPCR 检测了不同密度和不同分化阶段的小鼠成肌细胞中 circ-FoxO3 的表达水平,并使用特异性干扰片段抑制成肌细胞中 circ-FoxO3 的表达水平,观察其对成肌细胞增殖和分化的影响。我们发现,circ-FoxO3 在成肌细胞中的表达水平随着成肌细胞分化时间的延长而增加,而随着成肌细胞的增殖而降低。同时,我们发现抑制成肌细胞中 circ-FoxO3 的表达后,细胞的分化能力显著增加(<0.05),但细胞增殖没有变化(>0.05)。结合生物信息学分析和双荧光素酶报告实验的结果,我们发现 circ-FoxO3 是 miR-138-5p 的海绵体,调节肌肉分化。我们的研究表明,circ-FoxO3 可以抑制 C2C12 成肌细胞的分化,为进一步研究环状 RNA 水平的骨骼肌发育奠定了科学基础。