College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi, China.
Key Laboratory of Qinghai-Tibetan Plateau Animal Genetic Resource Reservation and Utilization, Sichuan Province and Ministry of Education, Southwest Minzu University, Chengdu, China.
J Cell Physiol. 2024 Feb;239(2):e31159. doi: 10.1002/jcp.31159. Epub 2024 Jan 11.
Noncoding RNAs, including miRNAs (microRNAs) and circRNAs (circular RNA), are crucial regulators of myoblast proliferation and differentiation during muscle development. However, the specific roles and molecular mechanisms of circRNAs in muscle development remain poorly understood. Based on the existing circRNA-miRNA-mRNA network, our study focuses on circUBE3C, exploring its differential expression in fetal and adult muscle tissue of the cattle and investigating its impact on myoblast proliferation, apoptosis, and differentiation. The functional analysis of overexpression plasmids and siRNAs (small interfering RNAs) targeting circUBE3C was comprehensively evaluated by employing an array of advanced assays, encompassing CCK-8 (cell counting kit-8), EdU (5-ethynyl-20-deoxyuridine), flow cytometry, western blot analysis, and RT-qPCR. In vivo investigations indicated that overexpression of circUBE3C impedes the process of skeletal muscle regeneration. Mechanistically, we demonstrated that circUBE3C interacts with miR-191 and alleviates the suppression of p27 through cytoplasmic separation, bioinformatics prediction, dual-luciferase reporter assay, and RIP (RNA immunoprecipitation). Our findings indicate that the novel circRNA circUBE3C competitively binds to miR-191, thereby inhibiting proliferation and promoting apoptosis in bovine primary myoblasts and unveiling a regulatory pathway in bovine skeletal muscle development. These findings expand our understanding of circRNA functions in mammals and provide a basis for further exploration of their role in myogenesis and muscle diseases.
非编码 RNA 包括 microRNAs (miRNAs) 和 circRNAs (环状 RNA),它们在肌肉发育过程中是肌肉细胞增殖和分化的重要调节因子。然而,circRNAs 在肌肉发育中的具体作用和分子机制仍知之甚少。基于现有的 circRNA-miRNA-mRNA 网络,我们的研究集中在 circUBE3C 上,探讨其在牛胎儿和成年肌肉组织中的差异表达,并研究其对成肌细胞增殖、凋亡和分化的影响。通过一系列先进的检测方法,包括 CCK-8(细胞计数试剂盒-8)、EdU(5-乙炔基-20-脱氧尿苷)、流式细胞术、Western blot 分析和 RT-qPCR,全面评估了针对 circUBE3C 的过表达质粒和 siRNA(小干扰 RNA)的功能分析。体内研究表明,circUBE3C 的过表达会阻碍骨骼肌再生过程。在机制上,我们证明 circUBE3C 与 miR-191 相互作用,并通过细胞质分离、生物信息学预测、双荧光素酶报告基因检测和 RIP(RNA 免疫沉淀)来减轻对 p27 的抑制作用。我们的研究结果表明,新型 circRNA circUBE3C 竞争性地与 miR-191 结合,从而抑制牛原代成肌细胞的增殖并促进其凋亡,并揭示了牛骨骼肌发育中的一种调控途径。这些发现扩展了我们对哺乳动物 circRNA 功能的理解,并为进一步探索它们在肌发生和肌肉疾病中的作用提供了基础。