DNA methylation is involved in the expression of miR-142-3p in fibroblasts and induced pluripotent stem cells

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Abstract

MicroRNAs are differentially expressed in cells and regulate multiple biological processes.We have been analyzing comprehensive expression patterns of microRNA in human and mouse embryonic stem and induced pluripotent stem cells. We determined microRNAs specifically expressed in these pluripotent stem cells, and miR-142-3p is one of such microRNAs. miR-142-3p is expressed at higher levels in induced pluripotent stemcells relative to fibroblasts in mice. Level of expression of miR142-3p decreased during embryoid body formation from induced pluripotent stemcells. Loss-of-function analyses ofmiR-142-3p suggested that miR-142-3p plays roles in the proliferation and differentiation of induced pluripotent stemcells.CpGmotifswere found in the 5′ genomic region of the miR-142-3p; they were highly methylated in fibroblasts, but not in undifferentiated induced pluripotent stem cells. Treating fibroblasts with 5-aza-2′-deoxycytidine increased the expression of miR-142-3p significantly and reduced methylation at the CpG sites, suggesting that the expression of miR-142-3p is suppressed by DNA methylation in fibroblasts. Luciferase analysis using various lengths of the 5′ genomic region of miR142-3p indicated that CpGs in the proximal enhancer region may play roles in suppressing the expression of miR-142-3p in fibroblasts.

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Razak, S. R. A., Baba, Y., Nakauchi, H., Otsu, M., & Watanabe, S. (2014). DNA methylation is involved in the expression of miR-142-3p in fibroblasts and induced pluripotent stem cells. Stem Cells International, 2014. https://doi.org/10.1155/2014/101349

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