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Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204

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 studi...

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Autores principales: 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
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8517228/
https://www.ncbi.nlm.nih.gov/pubmed/34660593
http://dx.doi.org/10.3389/fcell.2021.736749
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author 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
author_facet 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
author_sort Wei, Yuanhang
collection PubMed
description 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.
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spelling pubmed-85172282021-10-16 Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204 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 Front Cell Dev Biol Cell and Developmental Biology 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. Frontiers Media S.A. 2021-10-01 /pmc/articles/PMC8517228/ /pubmed/34660593 http://dx.doi.org/10.3389/fcell.2021.736749 Text en Copyright © 2021 Wei, Tian, Li, Amevor, Shen, Zhao, Zhao, Zhang, Huang, Hu, Yi, Yan, Zhang, Li, Ma, Zhu and Yin. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
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
Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title_full Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title_fullStr Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title_full_unstemmed Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title_short Circular RNA circFNDC3AL Upregulates BCL9 Expression to Promote Chicken Skeletal Muscle Satellite Cells Proliferation and Differentiation by Binding to miR-204
title_sort circular rna circfndc3al upregulates bcl9 expression to promote chicken skeletal muscle satellite cells proliferation and differentiation by binding to mir-204
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8517228/
https://www.ncbi.nlm.nih.gov/pubmed/34660593
http://dx.doi.org/10.3389/fcell.2021.736749
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