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Articles

MiR-421 regulates goat intramuscular preadipocytes differentiation via targeting FGF13

ORCID Icon, , , , , & show all
Pages 1333-1343 | Published online: 29 Apr 2021
 

Abstract

As a member of the MicroRNA s (miRNAs) family, miR-421 has been widely studied in regulating the proliferation and apoptosis of cancer cells a. However, there are still no reports on miR-421 in regulating adipocyte differentiation and its related mechanisms. Accordingly, this study aimed to investigate the potential involvement of miR-421 in goat intramuscular preadipocytes (P_IMA). The expression level of miR-421 was measured via quantitative real-time PCR during goat P_IMA differentiation. And the effects of miR-421 on goat P_IMA differentiation were studied by liposome transfection, Oil red O staining and qRT-PCR. Furthermore, the miR-421 target was searched and the underlying mechanism was clarified by luciferase reporter assay and rescue experiment. Our results showed that inhibition of miR-421 could accumulation of lipid droplets by upregulation the expression level of AP2, LPL, C/EBPα and SREBP1. Further studies showed that fibroblast growth factor 13 (FGF13) was the direct target of miR-421. Knocking down of FGF13 expression could inhibit lipid droplet formation and down-regulated the expression of key adipogenic regulatory genes. In addition, the rescue experiment revealed that FGF13 is involved in miR-421-induced differentiation of goat P_IMA as a key factor. Overall, these findings indicate that miR-421 is a negative regulator in the progression of differentiation of goat P_IMA by inhibiting the expression of FGF13.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Author contributions

Y.L., Y.W. and Y.D. conceived and designed the experiment; Y. D. and J.M. performed the experiment; Y.L., Q.M. and J.M. analyzed and interpreted the data; J.Z. and Y.L. assisted data analysis and interpretation; Y. D. wrote the manuscript.

Additional information

Funding

This study was supported by National Natural Sciences Foundation of China [32072723] and Fundamental Research Funds for the Central Universities [No.2020PTJS15004].

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