Xu Xiaoli, Zhang Mancheng, Zhan Siyuan, Chen Yuan, Wei Chengqi, Cao Jiaxue, Guo Jiazhong, Dai Dinghui, Wang Linjie, Zhong Tao, Zhang Hongping, Li Li
Farm Animal Genetic Resources Exploration Innovation Key Laboratory of Sichuan Province, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, China.
Front Vet Sci. 2024 Oct 9;11:1439029. doi: 10.3389/fvets.2024.1439029. eCollection 2024.
RNA editing, especially A-to-I editing sites, is a common RNA modification critical for stem cell differentiation, muscle development, and disease occurrence. Unveiling comprehensive RNA A-to-I editing events associated with myogenesis of the skeletal muscle satellite cells (MuSCs) is essential for extending our knowledge of the mechanism underpinning muscle development.
A total of 9,632 RNA editing sites (RESs) were screened in the myoblasts (GM), myocytes (DM1), and myotubes (DM5) samples. Among these sites, 4,559 A-to-I edits were classified and further analyzed. There were 3,266 A-to-I sites in the protein-coding region, out of which 113 missense sites recoded protein. Notably, five A-to-I sites in the 3' UTR of four genes (, , , ) altered their targeted miRNAs. Furthermore, a total of 370 A-to-I sites with different editing levels were detected, including , , , , and genes. These genes were predominantly enriched in the cytoskeleton in muscle cells, the hippo signaling pathway, and the tight junction. Furthermore, we identified 14 hub genes (, , , , , , , , , , , , , ) that potentially related to muscle development. Additionally, 123 stage-specific A-to-I editing sites were identified, with 43 sites in GM, 25 in DM1, and 55 in DM5 samples. These stage-specific edited genes significantly enriched essential biological pathways, including the cell cycle, oocyte meiosis, motor proteins, and hedgehog signaling pathway.
We systematically identified the RNA editing events in proliferating and differentiating goat MuSCs, which was crucial for expanding our understanding of the regulatory mechanisms of muscle development.
RNA编辑,尤其是A到I的编辑位点,是一种常见的RNA修饰,对干细胞分化、肌肉发育和疾病发生至关重要。揭示与骨骼肌卫星细胞(MuSCs)成肌相关的全面RNA A到I编辑事件对于扩展我们对肌肉发育机制的认识至关重要。
在成肌细胞(GM)、肌细胞(DM1)和肌管(DM5)样本中总共筛选出9632个RNA编辑位点(RESs)。在这些位点中,对4559个A到I编辑进行了分类并进一步分析。蛋白质编码区有3266个A到I位点,其中113个错义位点对蛋白质进行了重新编码。值得注意的是,四个基因(、、、)3'UTR中的五个A到I位点改变了它们的靶向miRNA。此外,总共检测到370个具有不同编辑水平的A到I位点,包括、、、和基因。这些基因主要富集在肌肉细胞的细胞骨架、河马信号通路和紧密连接中。此外,我们鉴定出14个可能与肌肉发育相关的枢纽基因(、、、、、、、、、、、、、)。此外,还鉴定出123个阶段特异性A到I编辑位点,GM样本中有43个位点,DM1样本中有25个位点,DM5样本中有55个位点。这些阶段特异性编辑基因显著富集了重要的生物学途径,包括细胞周期、卵母细胞减数分裂、运动蛋白和刺猬信号通路。
我们系统地鉴定了增殖和分化的山羊MuSCs中的RNA编辑事件,这对于扩展我们对肌肉发育调控机制的理解至关重要。