Wei Yuanhang, Tian Yongtong, Li Xinyan, Amevor Felix Kwame, Shen Xiaoxu, Zhao Jing, Zhao Xiyu, Zhang Xinyi, Huang Wenling, Hu Jihong, Yi Jie, Yan Lei, Zhang Yao, Li Diyan, Ma Menggen, Zhu Qing, Yin Huadong
Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, China.
College of Resources, Sichuan Agricultural University, Chengdu, China.
Front Cell Dev Biol. 2021 Oct 1;9:736749. doi: 10.3389/fcell.2021.736749. eCollection 2021.
Skeletal muscle is a heterogeneous tissue that is essential for initiating movement and maintaining homeostasis. The genesis of skeletal muscle is an integrative process that lasts from embryonic development to postnatal stages, which is carried out under the modulation of many factors. Recent studies have shown that circular RNAs (circRNAs), a class of non-coding RNAs, are involved in myogenesis. However, more circRNAs and their mechanisms that may regulate skeletal muscle development remain to be explored. Through in-depth analysis of our previous RNA-Seq data, circFNDC3AL was found to be a potentially functional circRNA highly expressed during embryonic development of chicken skeletal muscle. Therefore, in this study, we investigated the effect of circFNDC3AL on skeletal muscle development in chickens and found that circFNDC3AL promoted chicken skeletal muscle satellite cell (SMSC) proliferation and differentiation. To gain a thorough understanding of the exact modulatory mechanisms of circFNDC3AL in chicken skeletal muscle development, we performed target miRNA analysis of circFNDC3AL and found that circFNDC3AL has a binding site for miR-204. Subsequently, we demonstrated that miR-204 inhibited chicken SMSC proliferation and differentiation, which showed the opposite functions of circFNDC3AL. Furthermore, we identified the miR-204 target gene B-cell CLL/lymphoma 9 (BCL9) and validated that miR-204 had an inhibitory effect on BCL9, while the negative effect could be relieved by circFNDC3AL. In addition, we verified that BCL9 performed the same positive functions on chicken SMSC proliferation and differentiation as circFNDC3AL, as opposed to miR-204. In conclusion, our study identified a circRNA circFNDC3AL that upregulates BCL9 expression to promote the proliferation and differentiation of chicken SMSCs by binding to miR-204.
骨骼肌是一种异质性组织,对于启动运动和维持体内平衡至关重要。骨骼肌的发生是一个从胚胎发育到出生后阶段的整合过程,该过程在多种因素的调节下进行。最近的研究表明,环状RNA(circRNAs),一类非编码RNA,参与了肌生成。然而,更多可能调节骨骼肌发育的circRNAs及其机制仍有待探索。通过对我们之前的RNA测序数据进行深入分析,发现circFNDC3AL是一种在鸡骨骼肌胚胎发育过程中高表达的潜在功能性circRNA。因此,在本研究中,我们研究了circFNDC3AL对鸡骨骼肌发育的影响,发现circFNDC3AL促进了鸡骨骼肌卫星细胞(SMSC)的增殖和分化。为了深入了解circFNDC3AL在鸡骨骼肌发育中的确切调节机制,我们对circFNDC3AL进行了靶标miRNA分析,发现circFNDC3AL有一个与miR-204的结合位点。随后,我们证明miR-204抑制鸡SMSC的增殖和分化,这与circFNDC3AL的功能相反。此外,我们鉴定了miR-204的靶标基因B细胞淋巴瘤/白血病9(BCL9),并验证了miR-204对BCL9有抑制作用,而circFNDC3AL可以缓解这种负面影响。此外,我们还验证了BCL9对鸡SMSC增殖和分化的作用与circFNDC3AL相同,与miR-204相反。总之,我们的研究鉴定了一种circRNA circFNDC3AL,它通过与miR-204结合上调BCL9的表达,从而促进鸡SMSC的增殖和分化。