MiR-92b-3p inhibits proliferation and migration of C2C12 cells.
Zijian YeJia ShiZuocheng NingLianjie HouChing Yuan HuChong WangPublished in: Cell cycle (Georgetown, Tex.) (2020)
Skeletal muscle, a critical component of the mammalian body, is essential for normal body movement. miRNAs are well documented in gene post-transcription regulation in many biological processes, including muscle development and maintenance. miR-92b-3p, which is often associated with tumorigenesis, has never been explored in myoblast development. Here, we used murine-derived C2C12 myoblasts to explore the potential functions of miR-92b-3p in skeletal muscle development. Our results demonstrated that miR-92b-3p mimics inhibited C2C12 cell proliferation and migration, whereas miR-92b-3p inhibitor promoted C2C12 cell proliferation and migration. C2C12 cell differentiation was not affected by miR-92b-3p mimics, according to immunofluorescence and qPCR results. Serum- and glucocorticoid-induced kinase 3 (SGK3) was predicted and validated as a target of miR-92b-3p. Overexpression of SGK3 promoted C2C12 cell proliferation. SGK3 and miR-92b-3p formed a regulatory pathway to modulate C2C12 cell proliferation. In conclusion, miR-92b-3p inhibited C2C12 cell proliferation by targeting SGK3 and impeded C2C12 cell migration.
Keyphrases
- cell proliferation
- skeletal muscle
- cell migration
- cell cycle
- single cell
- transcription factor
- insulin resistance
- cell therapy
- induced apoptosis
- pi k akt
- oxidative stress
- gene expression
- metabolic syndrome
- copy number
- high glucose
- diabetic rats
- risk assessment
- genome wide
- endoplasmic reticulum stress
- adipose tissue
- mesenchymal stem cells
- tyrosine kinase