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Effect of microRNA-101 on apoptosis of rabbit condylar cartilage cells by inhibiting target gene SOX9
Asian Pacific Journal of Tropical Biomedicine ; (12): 501-504, 2015.
Article in Chinese | WPRIM | ID: wpr-499687
ABSTRACT

Objective:

To explore the effect of microRNA-101 on apoptosis of condylar cartilage cells and the specific mechanism of molecular biology.

Methods:

IL-1 was used to stimulate and establish the model of apoptosis of condylar cartilage cells. The expression change of miR-101 in control group was compared with that in IL-1 stimulation group by qRT-PCR. Overexpression and down-regulation models of miR-101 were established by transfecting Mimics and Inhibitor and verified by qRT-PCR. Flow cytometry was used to detect the effect of miR-101 overexpression and down-regulation on apoptosis. Target gene of miR-101 was analyzed and calculated through bioinformatics. Western blot and Luciferase report assay were used to detect whether Sox9 could become the target gene of miR-101.

Results:

qRT-PCR results showed that IL-1 stimulation could cause the increase of miR-101 expression. After the transfection of rabbit condylar cartilage cells by Mimics and Inhibitor, qRT-PCR results confirmed the significant effect of miR-101 overexpression and down-regulation. It was confirmed by flow cytometry that overexpression of miR-101 could promote the apoptosis of condylar cartilage cells, and down-regulation of miR-101 could reduce the apoptosis. It was confirmed by Western blot and Luciferase report assay that Sox9 was the target gene of miR-101, and miR-101 inhibited SOX9 expression through complementary pairing with 3’UTR of Sox9 mRNA.

Conclusions:

miR-101 can promote the apoptosis of condylar cartilage cells through inhibiting the protein level of target gene SOX9.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Asian Pacific Journal of Tropical Biomedicine Year: 2015 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Asian Pacific Journal of Tropical Biomedicine Year: 2015 Type: Article