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Overexpression of RPN2 promotes osteogenic differentiation of hBMSCs through the JAK/STAT3 pathway

机译:RPN2的过度表达促进HBMSCS通过JAK / Stat3途径的成骨分化

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Osteoporosis is characterized by decreased bone mass and degenerating bone structure, which cause severe bone fragility and increase the risk for fractures. Human bone mesenchymal stem cells (hBMSCs) differentiate into osteoblasts through osteogenesis, and disturbances in the balance between bone generation and degeneration underlie the pathogenesis of senile osteoporosis. The highly conserved glycoprotein Ribophorin II (RPN2) is involved in multiple biological reactions, but the role of RPN2 in the osteogenic differentiation of hBMSCs and their molecular etiology is incompletely understood. Here, we show that RPN2 expression is up‐regulated in hBMSCs during osteogenic differentiation. In?vitro assays revealed that silencing of RPN2 inhibited hBMSC differentiation into osteoblasts. Moreover, RPN2 overexpression enhanced the expression of linked genes and resulted in high alkaline phosphatase activity. Our results suggest that RPN2 targets Janus kinase 1 (JAK1), and RPN2 overexpression was observed to induce JAK1 ubiquitination. Depletion of JAK1 facilitated osteogenic differentiation of RPN2‐silenced hBMSCs. Moreover, western blot analysis revealed that RPN2 silencing suppressed the stimulation and nuclear translocation of the downstream signal transducer and activator of transcription 3 sensor; this could be reversed via RPN2 overexpression. This research sheds light on an innovative molecular mechanism that is associated with hBMSC differentiation into osteoblasts and may facilitate bone anabolism through RPN2.
机译:骨质疏松症的特征在于骨质量和退化骨结构下降,这导致严重的骨脆性并增加骨折的风险。人骨间充质干细胞(HBMSCs)通过成骨细胞分化为成骨细胞,以及骨发电与变性之间平衡的干扰使得老年骨质疏松症的发病机制。高度保守的糖蛋白核化蛋白II(RPN2)涉及多种生物反应,但是RPN2在HBMSCs的成骨分化中的作用及其分子病因的作用是不完全理解的。这里,我们表明RPN2表达在成骨分化期间在HBMSC上上调。在体外测定中显示RPN2的沉默抑制HBMSC分化成骨细胞。此外,RPN2过表达增强了连接基因的表达,并导致高碱性磷酸酶活性。我们的研究结果表明,RPN2靶向Janus激酶1(JAK1),并且观察到RPN2过表达诱导JAK1泛素化。 JAK1的耗竭促进了RPN2沉默的HBMSCs的成骨分化。此外,Western印迹分析显示RPN2沉默抑制了下游信号换能器和转录3传感器的激活剂的刺激和核转移;这可以通过RPN2过表达逆转。本研究揭示了一种创新的分子机制,与HBMSC分化与成骨细胞相关,并且可以通过RPN2促进骨代谢。

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