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Natural antisense transcript of MYOG regulates development and regeneration in skeletal muscle by shielding the binding sites of MicroRNAs of MYOG mRNA 3′UTR.

Authors :
Yin, Yunqian
Chen, Genghua
Lin, Zetong
Zhang, Danlu
Lin, Wujian
Luo, Wen
Source :
Biochemical & Biophysical Research Communications. Jun2023, Vol. 662, p93-103. 11p.
Publication Year :
2023

Abstract

Natural antisense transcripts (NATs) are endogenous RNAs opposite to sense transcripts, and they can significantly contribute to regulating various biological processes through multiple epigenetic mechanisms. NATs can affect their sense transcripts to regulate the growth and development of skeletal muscle. Our analysis of third-generation full-length transcriptome sequencing data revealed that NATs represented a significant portion of the lncRNA, accounting for up to 30.19%–33.35%. The expression of NATs correlated with myoblast differentiation, and genes expressing NATs were mainly involved in RNA synthesis, protein transport, and cell cycle. We found a NAT of MYOG (MYOG-NAT) in the data. We found that the MYOG-NAT could promote the differentiation of myoblasts in vitro. Additionally, knockdown of MYOG-NAT in vivo led to muscle fiber atrophy and muscle regeneration retardation. Molecular biology experiments demonstrated that MYOG-NAT enhances the stability of MYOG mRNA by competing with miR-128-2-5p, miR-19a-5p, and miR-19b-5p for binding to MYOG mRNA 3′UTR. These findings suggest that MYOG-NAT plays a critical role in skeletal muscle development and provides insights into the post-transcriptional regulation of NATs. • NATs are widespread in muscle development and are mainly involved in RNA synthesis and protein processing. • MYOG-NAT is specifically expressed in differentiated myotubes and skeletal muscle tissues. • MYOG-NAT promotes muscle differentiation and muscle regeneration. • MyoD1 promotes transcription of MYOG-NAT. • MYOG-NAT binds to MYOG mRNA and promotes its expression. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0006291X
Volume :
662
Database :
Academic Search Index
Journal :
Biochemical & Biophysical Research Communications
Publication Type :
Academic Journal
Accession number :
163515205
Full Text :
https://doi.org/10.1016/j.bbrc.2023.04.050