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MiR-26a functions oppositely in osteogenic differentiation of BMSCs and ADSCs depending on distinct activation and roles of Wnt and BMP signaling pathway

机译:MiR-26a在BMSC和ADSC的成骨分化中起相反的作用,具体取决于Wnt和BMP信号传导途径的独特激活和作用

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MicroRNAs (miRNAs) emerge as important regulators of stem cell lineage commitment and bone development. MiRNA-26a (miR-26a) is one of the important miRNAs regulating osteogenic differentiation of both bone marrow-derived mesenchymal stem cells (BMSCs) and adipose tissue-derived mesenchymal stem cells (ADSCs). However, miR-26a functions oppositely in osteogenic differentiation of BMSCs and ADSCs, suggesting distinct post-transcriptional regulation of tissue-specific MSC differentiation. However, the molecular basis is largely unknown. Here, we report that the function of miR-26a is largely depended on the intrinsic signaling regulation network of MSCs. Using bioinformatics and functional assay, we confirmed that miR-26a potentially targeted on GSK3 β and Smad1 to regulate Wnt and BMP signaling pathway. Overall comparative analysis revealed that Wnt signaling was enhanced more potently and played a more important role than BMP signaling in osteogenic differentiation of BMSCs, whereas BMP pathway was more essential for promoting osteogenic differentiation of ADSCs. The distinct activation pattern and role of signaling pathways determined that miR-26a majorly targeted on GSK3 β to activate Wnt signaling for promoting osteogenic differentiation of BMSCs, whereas it inhibited Smad1 to suppress BMP signaling for interfering with the osteogenic differentiation of ADSCs. Taken together, our study demonstrated that BMSCs and ADSCs applied different signaling pathway to facilitate their osteogenic differentiation, which determined the inverse function of miR-26a. The distinct transcriptional regulation and post-transcriptional regulation network suggested the intrinsic molecular differences between tissue-specific MSCs and the complexity in MSC research and MSC-based cell therapy.
机译:MicroRNA(miRNA)成为干细胞谱系承诺和骨骼发育的重要调节剂。 MiRNA-26a(miR-26a)是调节骨髓来源的间充质干细胞(BMSCs)和脂肪组织来源的间充质干细胞(ADSCs)成骨分化的重要miRNA之一。但是,miR-26a在BMSC和ADSC的成骨分化中起相反的作用,表明组织特异性MSC分化的转录后调控不同。但是,分子基础基本上是未知的。在这里,我们报告说,miR-26a的功能很大程度上取决于MSC的固有信号调节网络。使用生物信息学和功能测定,我们证实了miR-26a可能靶向GSK3β和Smad1来调节Wnt和BMP信号通路。总体比较分析表明,Wnt信号在BMSCs成骨分化中比BMP信号更有效地增强,并且起着更重要的作用,而BMP通路对于促进ADSCs的成骨分化则更为重要。独特的激活模式和信号通路的作用决定了miR-26a主要靶向GSK3β来激活Wnt信号,从而促进BMSCs的成骨分化,而它抑制Smad1抑制BMP信号传导,从而干扰ADSC的成骨分化。两者合计,我们的研究表明BMSCs和ADSCs应用不同的信号传导途径促进其成骨分化,这决定了miR-26a的逆功能。独特的转录调控和转录后调控网络表明组织特异性MSC之间固有的分子差异,以及MSC研究和基于MSC的细胞治疗的复杂性。

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