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Mettl3 Regulates Osteogenic Differentiation and Alternative Splicing of Vegfa in Bone Marrow Mesenchymal Stem Cells

机译:Mettl3调节成骨细胞的分化和Vegfa在骨髓间充质干细胞中的选择性剪接

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摘要

Bone mesenchymal stem cells (BMSCs) can be a useful cell resource for developing biological treatment strategies for bone repair and regeneration, and their therapeutic applications hinge on an understanding of their physiological characteristics. N6-methyl-adenosine (m6A) is the most prevalent internal chemical modification of mRNAs and has recently been reported to play important roles in cell lineage differentiation and development. However, little is known about the role of m6A modification in the cell differentiation of BMSCs. To address this issue, we investigated the expression of N6-adenosine methyltransferases (Mettl3 and Mettl14) and demethylases (Fto and Alkbh5) and found that Mettl3 was upregulated in BMSCs undergoing osteogenic induction. Furthermore, we knocked down Mettl3 and demonstrated that Mettl3 knockdown decreased the expression of bone formation-related genes, such as Runx2 and Osterix. The alkaline phosphatase (ALP) activity and the formation of mineralized nodules also decreased after Mettl3 knockdown. RNA sequencing analysis revealed that a vast number of genes affected by Mettl3 knockdown were associated with osteogenic differentiation and bone mineralization. Kyoto encyclopedia of genes and genomes (KEGG) pathway analysis revealed that the phosphatidylinositol 3-kinase/AKT (PI3K-Akt) signaling pathway appeared to be one of the most enriched pathways, and Western blotting results showed that Akt phosphorylation was significantly reduced after Mettl3 knockdown. Mettl3 has been reported to play an important role in regulating alternative splicing of mRNA in previous research. In this study, we found that Mettl3 knockdown not only reduced the expression of Vegfa but also decreased the level of its splice variants, vegfa-164 and vegfa-188, in Mettl3-deficient BMSCs. These findings might contribute to novel progress in understanding the role of epitranscriptomic regulation in the osteogenic differentiation of BMSCs and provide a promising perspective for new therapeutic strategies for bone regeneration.
机译:骨髓间充质干细胞(BMSCs)可能是开发骨骼修复和再生生物治疗策略的有用细胞资源,其治疗应用取决于对其生理特性的理解。 N 6 -甲基腺苷(m 6 A)是最普遍的mRNA内部化学修饰,最近已报道在细胞谱系分化和发育中起重要作用。然而,关于m 6 A修饰在BMSCs细胞分化中的作用了解甚少。为解决此问题,我们研究了N 6 -腺苷甲基转移酶(Mettl3和Mettl14)和脱甲基酶(Fto和Alkbh5)的表达,发现Mettl3在经历成骨诱导的BMSC中被上调。此外,我们敲低了Mettl3,并证明了Mettl3敲低了骨形成相关基因的表达,例如Runx2和Osterix。 Mettl3击倒后,碱性磷酸酶(ALP)活性和矿化结节的形成也降低了。 RNA测序分析显示,受Mettl3基因敲低影响的大量基因与成骨分化和骨矿化有关。京都基因和基因组百科全书(KEGG)通路分析表明,磷脂酰肌醇3-激酶/ AKT(PI3K-Akt)信号通路似乎是最富集的通路之一,Western印迹结果表明Mettl3后Akt磷酸化显着降低击倒。据报道,在先前的研究中,Mettl3在调节mRNA的可变剪接中起重要作用。在这项研究中,我们发现在缺乏Mettl3的BMSC中,Mettl3敲低不仅降低了Vegfa的表达,而且降低了其剪接变体vegfa-164和vegfa-188的水平。这些发现可能有助于了解转录组调控在骨髓间充质干细胞成骨分化中的作用方面的新进展,并为新的骨再生治疗策略提供有希望的前景。

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