MiR-9-5p, miR-675-5p and miR-138-5p damages the strontium and LRP5-mediated skeletal cell proliferation, differentiation, and adhesion

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Abstract

This study was designed to evaluate the effects of strontium on the expression levels of microRNAs (miRNAs) and to explore their effects on skeletal cell proliferation, differentiation, adhesion, and apoptosis. The targets of these miRNAs were also studied. Molecular cloning, cell proliferation assay, cell apoptosis assay, quantitative real-time PCR, and luciferase reporter assay were used. Strontium altered the expression levels of miRNAs in vitro and in vivo. miR-9-5p, miR-675-5p, and miR-138-5p impaired skeletal cell proliferation, cell differentiation and cell adhesion. miR-9-5p and miR-675-5p induced MC3T3-E1 cell apoptosis more specifically than miR-138-5p. miR-9-5p, miR-675-5p, and miR-138-5p targeted glycogen synthase kinase 3 ß (GSK3ß), ATPase Aminophospholipid Transporter Class I Type 8A Member 2 (ATP8A2), and Eukaryotic Translation Initiation Factor 4E Binding Protein 1 (EIF4EBP1), respectively. Low-density lipoprotein receptor-related protein 5 (LRP5) played a positive role in skeletal development. miR-9-5p, miR-675-5p, and miR-138-5p damage strontium and LRP5-mediated skeletal cell proliferation, differentiation, and adhesion, and induce cell apoptosis by targeting GSK3ß, ATP8A2, and EIF4EBP1, respectively.

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Sun, T., Leung, F., & Lu, W. W. (2016). MiR-9-5p, miR-675-5p and miR-138-5p damages the strontium and LRP5-mediated skeletal cell proliferation, differentiation, and adhesion. International Journal of Molecular Sciences, 17(2). https://doi.org/10.3390/ijms17020236

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