| Literature DB >> 32143708 |
Liyuan Yu1,2, Kai Xia1,2, Xiao Cen1,3, Xinqi Huang1,2, Wentian Sun1,2, Zhihe Zhao1,2, Jun Liu4,5.
Abstract
Bone diseases such as osteoarthritis, osteoporosis, and bone tumor present a severe public health problem. Osteogenic differentiation is a complex process associated with the differentiation of different cells, which could regulate transcription factors, cytokines, many signaling pathways, noncoding RNAs (ncRNAs), and epigenetic modulation. DNA methylation is a kind of stable epigenetic alterations in CpG islands without DNA sequence changes and is involved in cancer and other diseases, including bone development and homeostasis. ncRNAs can perform their crucial biological functions at the RNA level, and many findings have demonstrated essential functions of ncRNAs in osteogenic differentiation. In this review, we highlight current researches in DNA methylation of two relevant ncRNAs, including microRNAs and long noncoding RNAs, in the initiation and progression of osteogenesis and bone diseases.Entities:
Keywords: Bone; DNA methylation; Noncoding RNAs; Osteogenesis
Mesh:
Substances:
Year: 2020 PMID: 32143708 PMCID: PMC7060611 DOI: 10.1186/s13287-020-01625-7
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
DNA methylation of ncRNAs in the osteogenic differentiation
| ncRNAs | Gene ID | DNA methylation and effects | References |
|---|---|---|---|
| miRNA | miR-149 | Hypermethylation of miR-149 regulated the osteogenic differentiation of MSCs via SDF-1/CXCR4 signaling. | Li et al. [ |
| miRNA | miR-29b | MiR-29b targeted DNMT1 and led to the methylation modification in the Notch1 promoter, which affected the Notch signaling pathway and regulated the osteogenic differentiation in BMSCs. | Liu et al. [ |
| miRNA | miR-342-3p | Hypomethylation in the promoter of EVL promoted the miR-342-3p expression in osteogenic differentiation of hMSCs and human pre-osteoblast. | Han et al. [ |
| lncRNA | H19 | H19 has a strong osteogenic effect via the NOTCH1 pathway, and hypomethylation in the H19 promoter was associated with the high expression of H19. | Hadji et al. [ |
| lncRNA | H19 | Hypermethylation in the promoter of H19 by DNMT1 resulted in the low expression of H19 and suppression of the ERK signaling in disuse osteoporosis. | Li et al. [ |
| lncRNA | ANRIL | DNA methylation of CDKN2A promoter mediated ANRIL expression and altered the binding of the transcription factor, which was inversely associated with bone size, bone density, and mineralization. | Curtis et al. [ |
ncRNAs noncoding RNAs, DNMT DNA methyltransferase enzymes, BMSCs bone marrow stromal cells, hMSCs human mesenchymal stem cells
Fig. 1Hypermethylation at the CpG sites of miR-149 promoter inhibited the expression of miR-149, thereby eliminating the inhibitory effect on SDF-1 and activating the SDF-1/CXCR4 signaling, which ultimately induced osteogenic differentiation of MSCs [35]