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CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16

Muscle development is closely related to meat quality and production. CircRNAs, with a closed-ring structure, have been identified as a key regulator of muscle development. However, the roles and mechanisms of circRNAs in myogenesis are largely unknown. Hence, in order to unravel the functions of ci...

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Autores principales: Li, Meng, Zhang, Na, Li, Jiao, Ji, Mengting, Zhao, Tianzhi, An, Jiaqi, Cai, Chunbo, Yang, Yang, Gao, Pengfei, Cao, Guoqing, Guo, Xiaohong, Li, Bugao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965117/
https://www.ncbi.nlm.nih.gov/pubmed/36835196
http://dx.doi.org/10.3390/ijms24043779
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author Li, Meng
Zhang, Na
Li, Jiao
Ji, Mengting
Zhao, Tianzhi
An, Jiaqi
Cai, Chunbo
Yang, Yang
Gao, Pengfei
Cao, Guoqing
Guo, Xiaohong
Li, Bugao
author_facet Li, Meng
Zhang, Na
Li, Jiao
Ji, Mengting
Zhao, Tianzhi
An, Jiaqi
Cai, Chunbo
Yang, Yang
Gao, Pengfei
Cao, Guoqing
Guo, Xiaohong
Li, Bugao
author_sort Li, Meng
collection PubMed
description Muscle development is closely related to meat quality and production. CircRNAs, with a closed-ring structure, have been identified as a key regulator of muscle development. However, the roles and mechanisms of circRNAs in myogenesis are largely unknown. Hence, in order to unravel the functions of circRNAs in myogenesis, the present study explored circRNA profiling in skeletal muscle between Mashen and Large White pigs. The results showed that a total of 362 circRNAs, which included circIGF1R, were differentially expressed between the two pig breeds. Functional assays showed that circIGF1R promoted myoblast differentiation of porcine skeletal muscle satellite cells (SMSCs), while it had no effect on cell proliferation. In consideration of circRNA acting as a miRNA sponge, dual-luciferase reporter and RIP assays were performed and the results showed that circIGF1R could bind miR-16. Furthermore, the rescue experiments showed that circIGF1R could counteract the inhibitory effect of miR-16 on cell myoblast differentiation. Thus, circIGF1R may regulate myogenesis by acting as a miR-16 sponge. In conclusion, this study successfully screened candidate circRNAs involved in the regulation of porcine myogenesis and demonstrated that circIGF1R promotes myoblast differentiation via miR-16, which lays a theoretical foundation for understanding the role and mechanism of circRNAs in regulating porcine myoblast differentiation.
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spelling pubmed-99651172023-02-26 CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16 Li, Meng Zhang, Na Li, Jiao Ji, Mengting Zhao, Tianzhi An, Jiaqi Cai, Chunbo Yang, Yang Gao, Pengfei Cao, Guoqing Guo, Xiaohong Li, Bugao Int J Mol Sci Article Muscle development is closely related to meat quality and production. CircRNAs, with a closed-ring structure, have been identified as a key regulator of muscle development. However, the roles and mechanisms of circRNAs in myogenesis are largely unknown. Hence, in order to unravel the functions of circRNAs in myogenesis, the present study explored circRNA profiling in skeletal muscle between Mashen and Large White pigs. The results showed that a total of 362 circRNAs, which included circIGF1R, were differentially expressed between the two pig breeds. Functional assays showed that circIGF1R promoted myoblast differentiation of porcine skeletal muscle satellite cells (SMSCs), while it had no effect on cell proliferation. In consideration of circRNA acting as a miRNA sponge, dual-luciferase reporter and RIP assays were performed and the results showed that circIGF1R could bind miR-16. Furthermore, the rescue experiments showed that circIGF1R could counteract the inhibitory effect of miR-16 on cell myoblast differentiation. Thus, circIGF1R may regulate myogenesis by acting as a miR-16 sponge. In conclusion, this study successfully screened candidate circRNAs involved in the regulation of porcine myogenesis and demonstrated that circIGF1R promotes myoblast differentiation via miR-16, which lays a theoretical foundation for understanding the role and mechanism of circRNAs in regulating porcine myoblast differentiation. MDPI 2023-02-14 /pmc/articles/PMC9965117/ /pubmed/36835196 http://dx.doi.org/10.3390/ijms24043779 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Meng
Zhang, Na
Li, Jiao
Ji, Mengting
Zhao, Tianzhi
An, Jiaqi
Cai, Chunbo
Yang, Yang
Gao, Pengfei
Cao, Guoqing
Guo, Xiaohong
Li, Bugao
CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title_full CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title_fullStr CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title_full_unstemmed CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title_short CircRNA Profiling of Skeletal Muscle in Two Pig Breeds Reveals CircIGF1R Regulates Myoblast Differentiation via miR-16
title_sort circrna profiling of skeletal muscle in two pig breeds reveals circigf1r regulates myoblast differentiation via mir-16
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965117/
https://www.ncbi.nlm.nih.gov/pubmed/36835196
http://dx.doi.org/10.3390/ijms24043779
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