Circ_ST6GAL1-mediated competing endogenous RNA network regulates TGF-81-stimulated matrix Metalloproteinase-13 expression via Runx2 acetylation in osteoblasts

I. Saranya, R. L. Akshaya, K. Gomathi, R. Mohanapriya, Z. He, N. C. Partridge,N. Selvamurugan

Non-coding RNA Research(2024)

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摘要
Transforming growth factor-beta1 (TGF-81) stimulates matrix metalloproteinase-13 (MMP-13, a bone remodeling gene) expression, and this effect requires p300-mediated Runx2 (Runt-related transcription factor 2) acetylation in osteoblasts. p300 and Runx2 are transcriptional coactivator and bone transcription factor, respectively, which play key roles in the regulation of bone-remodeling genes. Non-coding ribonucleic acids (ncRNAs), such as long ncRNAs (lncRNAs) and microRNAs (miRNAs), have been linked to both physiological and pathological bone states. In this study, we proposed that TGF-81-mediated stimulation of MMP-13 expression is due to the downregulation of p300 targeting miRNAs in osteoblasts. We identified miR-130b-5p as one of the miRNAs downregulated by TGF-81 in osteoblasts. Forced expression of miR-130b-5p decreased p300 expression, Runx2 acetylation, and MMP-13 expression in these cells. Furthermore, TGF-81 upregulated circ_ST6GAL1, (a circular lncRNA) in osteoblasts; circRNA directly targeted miR-130b-5p. Antisense-mediated knockdown of circ_ST6GAL1 restored the function of miR-130b-5p, resulting in downregulation of p300, Runx2, and MMP-13 in these cells. Hence, our results suggest that TGF-81 influences circ_ST6GAL1 to sponge and degrade miR-130b5p, thereby promoting p300-mediated Runx2 acetylation for MMP-13 expression in osteoblasts. Thus, the circ_ST6GAL1/miR-130b-5p/p300 axis has potential significance in the treatment of bone and bone-related disorders.
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关键词
TGF-81,Runx2,p300,Noncoding RNAs,microRNA,Circular RNA
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