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Article

The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis

Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China
*
Author to whom correspondence should be addressed.
These authors equally contributed to this work.
Cells 2023, 12(6), 943; https://doi.org/10.3390/cells12060943
Submission received: 29 December 2022 / Revised: 3 March 2023 / Accepted: 16 March 2023 / Published: 20 March 2023

Abstract

Muscle development is a complex biological process involving an intricate network of multiple factor interactions. Through the analysis of transcriptome data and molecular biology confirmation, this study aims to reveal the molecular mechanism underlying sheep embryonic skeletal muscle development. The RNA sequencing of embryos was conducted, and microRNA (miRNA)-mediated competitive endogenous RNA (ceRNA) networks were constructed. qRT-PCR, siRNA knockdown, CCK-8 assay, scratch assay, and dual luciferase assay were used to carry out gene function identification. Through the analysis of the ceRNA networks, three miRNAs (miR-493-3p, miR-3959-3p, and miR-410-5p) and three genes (TEAD1, ZBTB34, and POGLUT1) were identified. The qRT-PCR of the DE-miRNAs and genes in the muscle tissues of sheep showed that the expression levels of the TEAD1 gene and miR-410-5p were correlated with the growth rate. The knockdown of the TEAD1 gene by siRNA could significantly inhibit the proliferation of sheep primary embryonic myoblasts, and the expression levels of SLC1A5, FoxO3, MyoD, and Pax7 were significantly downregulated. The targeting relationship between miR-410-5p and the TEAD1 gene was validated by a dual luciferase assay, and miR-410-5p can significantly downregulate the expression of TEAD1 in sheep primary embryonic myoblasts. We proved the regulatory relationship between miR-410-5p and the TEAD1 gene, which was related to the proliferation of sheep embryonic myoblasts. The results provide a reference and molecular basis for understanding the molecular mechanism of embryonic muscle development.
Keywords: ceRNA network; skeletal muscle; sheep; TEAD1 gene; miR-410-5p ceRNA network; skeletal muscle; sheep; TEAD1 gene; miR-410-5p

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MDPI and ACS Style

Hu, W.; Wang, X.; Bi, Y.; Bao, J.; Shang, M.; Zhang, L. The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells 2023, 12, 943. https://doi.org/10.3390/cells12060943

AMA Style

Hu W, Wang X, Bi Y, Bao J, Shang M, Zhang L. The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells. 2023; 12(6):943. https://doi.org/10.3390/cells12060943

Chicago/Turabian Style

Hu, Wenping, Xinyue Wang, Yazhen Bi, Jingjing Bao, Mingyu Shang, and Li Zhang. 2023. "The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis" Cells 12, no. 6: 943. https://doi.org/10.3390/cells12060943

APA Style

Hu, W., Wang, X., Bi, Y., Bao, J., Shang, M., & Zhang, L. (2023). The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells, 12(6), 943. https://doi.org/10.3390/cells12060943

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