NEAT1 functions as a key mediator of BMP2 to promote osteogenic differentiation of renal interstitial fibroblasts

Z Zhu, X Zhang, Y Jiang, S Ruan, F Huang, H Zeng… - …, 2021 - Future Medicine
Z Zhu, X Zhang, Y Jiang, S Ruan, F Huang, H Zeng, M Liu, W Xia, F Zeng, J Chen, Y Cui…
Epigenomics, 2021Future Medicine
Aim: To clarify the mechanism of NEAT1, an aberrantly upregulated lncRNA in Randall's
plaques (RP) similar to biomineralization, in mediating osteogenic differentiation of human
renal interstitial fibroblasts. Materials & methods: A comprehensive strategy of bioinformatic
analysis and experimental verification was performed. Results: BMP2 silence abolished the
osteogenic differentiation of human renal interstitial fibroblasts promoted by NEAT1.
Mechanically, NEAT1 not only induced the nucleolar translocation of EGR1 binding to BMP2 …
Aim
To clarify the mechanism of NEAT1, an aberrantly upregulated lncRNA in Randall's plaques (RP) similar to biomineralization, in mediating osteogenic differentiation of human renal interstitial fibroblasts.
Materials & methods
A comprehensive strategy of bioinformatic analysis and experimental verification was performed.
Results
BMP2 silence abolished the osteogenic differentiation of human renal interstitial fibroblasts promoted by NEAT1. Mechanically, NEAT1 not only induced the nucleolar translocation of EGR1 binding to BMP2 promotor, but also functioned as a sponge of miR-129-5p in the cytoplasm to promote BMP2 expression. Moreover, there was a positive correlation between NEAT1 and BMP2 expression in RP instead of normal renal papilla.
Conclusion
NEAT1 acted as a key mediator of BMP2 to promote human renal interstitial fibroblast osteogenic differentiation, through which NEAT1 might be involved in RP formation.
Future Medicine