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The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development

Myogenesis is controlled by a well-established transcriptional hierarchy that coordinates the activities of a set of muscle genes. Recently, roles in myogenesis have been described for non-coding RNAs, including a role of circular RNA (circRNA) to regulate muscle gene expression. However, the functi...

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Autores principales: Yue, Binglin, Wang, Jian, Ru, Wenxiu, Wu, Jiyao, Cao, Xiukai, Yang, Haiyan, Huang, Yongzheng, Lan, Xianyong, Lei, Chuzhao, Huang, Bizhi, Chen, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015828/
https://www.ncbi.nlm.nih.gov/pubmed/32045877
http://dx.doi.org/10.1016/j.omtn.2019.12.039
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author Yue, Binglin
Wang, Jian
Ru, Wenxiu
Wu, Jiyao
Cao, Xiukai
Yang, Haiyan
Huang, Yongzheng
Lan, Xianyong
Lei, Chuzhao
Huang, Bizhi
Chen, Hong
author_facet Yue, Binglin
Wang, Jian
Ru, Wenxiu
Wu, Jiyao
Cao, Xiukai
Yang, Haiyan
Huang, Yongzheng
Lan, Xianyong
Lei, Chuzhao
Huang, Bizhi
Chen, Hong
author_sort Yue, Binglin
collection PubMed
description Myogenesis is controlled by a well-established transcriptional hierarchy that coordinates the activities of a set of muscle genes. Recently, roles in myogenesis have been described for non-coding RNAs, including a role of circular RNA (circRNA) to regulate muscle gene expression. However, the functions of circRNA and the underlying mechanism by which circRNAs affect myogenesis remain poorly understood. In this study, we analyzed circRNA high-throughput sequencing results of bovine skeletal muscle samples and constructed a circRNA-miRNA-mRNA network according to the competitive endogenous RNA (ceRNA) theory. The putative circHUWE1-miR-29b-AKT3 network was analyzed and its involvement in myogenesis was confirmed through a series of assays. To assess the potential function of this regulation, bovine myoblasts were infected with overexpression plasmids and small interfering RNAs (siRNAs) that target circHUWE1. Next, cell proliferation, apoptosis, and differentiation were analyzed using Cell Counting Kit-8 (CCK-8), 5-ethynyl-2′-deoxyuridine (EdU), flow cytometry, western blotting, and qRT-PCR assays. The results suggest that circHUWE1 facilitates bovine myoblast proliferation and inhibits cell apoptosis and differentiation. Next, bioinformatics, dual-luciferase reporter assay, and AGO2 RNA immunoprecipitation (RIP) approaches were used to verify the interaction between circHUWE1, miR-29b, and AKT3. Subsequently, we identified that circHUWE1 could directly interfere with the ability of miR-29b to relieve AKT3 suppression, which ultimately activates the AKT signaling pathway. These findings suggested a new regulatory pathway for bovine skeletal muscle development, and they also expand our understanding of circRNA functions in mammals.
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spelling pubmed-70158282020-02-18 The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development Yue, Binglin Wang, Jian Ru, Wenxiu Wu, Jiyao Cao, Xiukai Yang, Haiyan Huang, Yongzheng Lan, Xianyong Lei, Chuzhao Huang, Bizhi Chen, Hong Mol Ther Nucleic Acids Article Myogenesis is controlled by a well-established transcriptional hierarchy that coordinates the activities of a set of muscle genes. Recently, roles in myogenesis have been described for non-coding RNAs, including a role of circular RNA (circRNA) to regulate muscle gene expression. However, the functions of circRNA and the underlying mechanism by which circRNAs affect myogenesis remain poorly understood. In this study, we analyzed circRNA high-throughput sequencing results of bovine skeletal muscle samples and constructed a circRNA-miRNA-mRNA network according to the competitive endogenous RNA (ceRNA) theory. The putative circHUWE1-miR-29b-AKT3 network was analyzed and its involvement in myogenesis was confirmed through a series of assays. To assess the potential function of this regulation, bovine myoblasts were infected with overexpression plasmids and small interfering RNAs (siRNAs) that target circHUWE1. Next, cell proliferation, apoptosis, and differentiation were analyzed using Cell Counting Kit-8 (CCK-8), 5-ethynyl-2′-deoxyuridine (EdU), flow cytometry, western blotting, and qRT-PCR assays. The results suggest that circHUWE1 facilitates bovine myoblast proliferation and inhibits cell apoptosis and differentiation. Next, bioinformatics, dual-luciferase reporter assay, and AGO2 RNA immunoprecipitation (RIP) approaches were used to verify the interaction between circHUWE1, miR-29b, and AKT3. Subsequently, we identified that circHUWE1 could directly interfere with the ability of miR-29b to relieve AKT3 suppression, which ultimately activates the AKT signaling pathway. These findings suggested a new regulatory pathway for bovine skeletal muscle development, and they also expand our understanding of circRNA functions in mammals. American Society of Gene & Cell Therapy 2020-01-14 /pmc/articles/PMC7015828/ /pubmed/32045877 http://dx.doi.org/10.1016/j.omtn.2019.12.039 Text en © 2020 The Authors. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Yue, Binglin
Wang, Jian
Ru, Wenxiu
Wu, Jiyao
Cao, Xiukai
Yang, Haiyan
Huang, Yongzheng
Lan, Xianyong
Lei, Chuzhao
Huang, Bizhi
Chen, Hong
The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title_full The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title_fullStr The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title_full_unstemmed The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title_short The Circular RNA circHUWE1 Sponges the miR-29b-AKT3 Axis to Regulate Myoblast Development
title_sort circular rna circhuwe1 sponges the mir-29b-akt3 axis to regulate myoblast development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015828/
https://www.ncbi.nlm.nih.gov/pubmed/32045877
http://dx.doi.org/10.1016/j.omtn.2019.12.039
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