4.6 Article

Analysis of Gene Expression Patterns of Epigenetic Enzymes Dnmt3a, Tet1 and Ogt in Murine Chondrogenic Models

期刊

CELLS
卷 10, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/cells10102678

关键词

chondrogenesis; chondrocyte; cell differentiation; 2; micromass culture; mouse embryo; DNA methylation; 5-azacytidine

资金

  1. Gedeon Richter Plc. [2020/R/20/2502]
  2. European Union
  3. European Social Fund
  4. Premium Postdoctoral Research Fellowship of the Eotvos Lorand Research Network (ELKH)
  5. Young Researcher Excellence Programme of the National Research, Development and Innovation Office, Hungary [FK-134304]
  6. National Research, Development and Innovation Fund of Hungary under the 2020-4.1.1-TKP2020 funding scheme [TKP2020-NKA-04]
  7. National Research, Development and Innovation Fund, Hungary [K131588]
  8. [EFOP-3.6.1-16-2016-00022]
  9. [EFOP-3.6.3-VEKOP-16-2017-00009]

向作者/读者索取更多资源

The study demonstrated the significant role of DNA demethylation enzyme Tet1 in chondrogenesis, and found that inhibition of DNA methylation had distinct effects on different stages of in vitro cartilage formation.
We investigated the gene expression pattern of selected enzymes involved in DNA methylation and the effects of the DNA methylation inhibitor 5-azacytidine during in vitro and in vivo cartilage formation. Based on the data of a PCR array performed on chondrifying BMP2-overexpressing C3H10T1/2 cells, the relative expressions of Tet1 (tet methylcytosine dioxygenase 1), Dnmt3a (DNA methyltransferase 3), and Ogt (O-linked N-acetylglucosamine transferase) were further examined with RT-qPCR in murine cell line-based and primary chondrifying micromass cultures. We found very strong but gradually decreasing expression of Tet1 throughout the entire course of in vitro cartilage differentiation along with strong signals in the cartilaginous embryonic skeleton using specific RNA probes for in situ hybridization on frozen sections of 15-day-old mouse embryos. Dnmt3a and Ogt expressions did not show significant changes with RT-qPCR and gave weak in situ hybridization signals. The DNA methylation inhibitor 5-azacytidine reduced cartilage-specific gene expression and cartilage formation when applied during the early stages of chondrogenesis. In contrast, it had a stimulatory effect when added to differentiated chondrocytes, and quantitative methylation-specific PCR proved that the DNA methylation pattern of key chondrogenic marker genes was altered by the treatment. Our results indicate that the DNA demethylation inducing Tet1 plays a significant role during chondrogenesis, and inhibition of DNA methylation exerts distinct effects in different phases of in vitro cartilage formation.

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