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环状RNA circCPE通过吸附miR-138调控成肌细胞发育。

The circular RNA circCPE regulates myoblast development by sponging miR-138.

作者信息

Ru Wenxiu, Qi Ao, Shen Xuemei, Yue Binglin, Zhang Xiaoyan, Wang Jian, Cao Hui, Chen Hong

机构信息

Key laboratory of Animal Genetics, Breeding and Reproduction of Shaanxi Province, College of Animal Science and Technology, Northwest A&F University, Yangling, 712100, Shaanxi, China.

Shaanxi Kingbull Livestock co.,LTD, Yangling, 712100, Shaanxi, China.

出版信息

J Anim Sci Biotechnol. 2021 Sep 8;12(1):102. doi: 10.1186/s40104-021-00618-7.

Abstract

BACKGROUND

Skeletal muscle development, a long-term and complex process, is controlled by a set of the myogenic genes. Circular RNAs (circRNAs), a class of noncoding RNA, have been shown to regulate various biological processes. Recent studies indicate circRNAs may be involved in myogenesis, but the role and regulatory mechanism of circRNAs in myogenesis is largely unknown. In the present study, circCPE was firstly found to promote the bovine myoblast proliferation and inhibit cell apoptosis and differentiation by influencing the expression of FOXC1 in a miR138-mediated manner. And in vivo experiments revealed that overexpression of circCPE attenuates skeletal muscle regeneration.

RESULTS

We identified a novel circular RNA circCPE by analyzing circRNAs sequencing data of bovine muscle tissue. Sequencing verification, RNase R treatment and Actinomycin D treatment confirmed the circular nature of circCPE in bovine muscle. Functional assays showed that overexpression of circCPE could inhibit bovine myoblast apoptosis and differentiation, as well as facilitate cell proliferation. Moreover, in vivo experiments revealed that overexpression of circCPE attenuates skeletal muscle regeneration. In consideration of circRNA action as miRNAs sponge, we found that circCPE harbors miR-138 binding sites and absorbed miR-138. Mechanistically, the rescue experiments showed that the overexpression of circCPE can counteract the inhibitory effect of miR-138 on the cell proliferation and the accelerated effects on the differentiation and apoptosis. Subsequently, we found that circCPE sequester the inhibitory effect of miR-138 on FOXC1 so as to involve in myogenesis.

CONCLUSIONS

Collectively, we constructed a novel circCPE/miR-138/FOXC1 regulatory network in bovine myogenesis, which further provide stronger evidence that circRNA involved in muscle development acting as miRNA sponge.

摘要

背景

骨骼肌发育是一个长期而复杂的过程,受一组生肌基因控制。环状RNA(circRNAs)是一类非编码RNA,已被证明可调节多种生物学过程。最近的研究表明circRNAs可能参与肌生成,但circRNAs在肌生成中的作用和调控机制在很大程度上尚不清楚。在本研究中,首次发现circCPE通过以miR138介导的方式影响FOXC1的表达来促进牛成肌细胞增殖并抑制细胞凋亡和分化。体内实验表明,circCPE的过表达会减弱骨骼肌再生。

结果

我们通过分析牛肌肉组织的circRNAs测序数据鉴定出一种新型环状RNA circCPE。测序验证、RNase R处理和放线菌素D处理证实了circCPE在牛肌肉中的环状性质。功能分析表明,circCPE的过表达可抑制牛成肌细胞凋亡和分化,并促进细胞增殖。此外,体内实验表明,circCPE的过表达会减弱骨骼肌再生。考虑到circRNA作为miRNAs海绵的作用,我们发现circCPE含有miR-138结合位点并吸附miR-138。机制上,挽救实验表明,circCPE的过表达可以抵消miR-138对细胞增殖的抑制作用以及对分化和凋亡的加速作用。随后,我们发现circCPE消除了miR-138对FOXC1的抑制作用,从而参与肌生成。

结论

总体而言,我们在牛肌生成中构建了一个新型的circCPE/miR-138/FOXC1调控网络,这进一步提供了更强的证据,证明circRNA作为miRNA海绵参与肌肉发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d8/8424951/ba0ee9a52670/40104_2021_618_Fig1_HTML.jpg

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