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首页> 外文期刊>Cell death & disease. >Schnurri-3 regulates BMP9-induced osteogenic differentiation and angiogenesis of human amniotic mesenchymal stem cells through Runx2 and VEGF
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Schnurri-3 regulates BMP9-induced osteogenic differentiation and angiogenesis of human amniotic mesenchymal stem cells through Runx2 and VEGF

机译:Schnurri-3通过Runx2和VEGF调节人羊膜间充质干细胞的BMP9诱导的骨质发生分化和血管生成

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摘要

Human amniotic mesenchymal stem cells (hAMSCs) are multiple potent progenitor cells (MPCs) that can differentiate into different lineages (osteogenic, chondrogenic, and adipogenic cells) and have a favorable capacity for angiogenesis. Schnurri-3 (Shn3) is a large zinc finger protein related to Drosophila Shn, which is a critical mediator of postnatal bone formation. Bone morphogenetic protein 9 (BMP9), one of the most potent osteogenic BMPs, can strongly upregulate various osteogenesis- and angiogenesis-related factors in MSCs. It remains unclear how Shn3 is involved in BMP9-induced osteogenic differentiation coupled with angiogenesis in hAMSCs. In this investigation, we conducted a comprehensive study to identify the effect of Shn3 on BMP9-induced osteogenic differentiation and angiogenesis in hAMSCs and analyze the responsible signaling pathway. The results from in vitro and in vivo experimentation show that Shn3 notably inhibits BMP9-induced early and late osteogenic differentiation of hAMSCs, expression of osteogenesis-related factors, and subcutaneous ectopic bone formation from hAMSCs in nude mice. Shn3 also inhibited BMP9-induced angiogenic differentiation, expression of angiogenesis-related factors, and subcutaneous vascular invasion in mice. Mechanistically, we found that Shn3 prominently inhibited the expression of BMP9 and activation of the BMP/Smad and BMP/MAPK signaling pathways. In addition, we further found activity on runt-related transcription factor 2 (Runx2), vascular endothelial growth factor (VEGF), and the target genes shared by BMP and Shn3 signaling pathways. Silencing Shn3 could dramatically enhance the expression of Runx2, which directly regulates the downstream target VEGF to couple osteogenic differentiation with angiogenesis. To summarize, our findings suggested that Shn3 significantly inhibited the BMP9-induced osteogenic differentiation and angiogenesis in hAMSCs. The effect of Shn3 was primarily seen through inhibition of the BMP/Smad signaling pathway and depressed expression of Runx2, which directly regulates VEGF, which couples BMP9-induced osteogenic differentiation with angiogenesis.
机译:人羊膜间充质干细胞(HAMSCs)是多种有效的祖细胞(MPC),其可以分化为不同的谱系(骨质发生,软骨和脂肪细胞),并且具有良好的血管生成能力。 Schnurri-3(SHN3)是一种与果蝇SHN相关的大型锌指蛋白,这是产后骨形成的临界介质。骨形态发生蛋白9(BMP9)是最有效的骨质骨质BMP之一,可以强烈地上调MSC中的各种成骨和血管生成相关因子。仍然不明确于SHN3如何参与BMP9诱导的骨质骨质分化,与HAMSCs中的血管生成相结合。在这项调查中,我们进行了全面的研究,以确定SHN3对HAMSCS中BMP9诱导的骨质发生分化和血管生成的影响,并分析负责的信号通路。来自体外和体内实验的结果表明,SHN3显着抑制了HAMSCS的早期和晚期成骨分化,从裸鼠中的HAMSCS的骨胃癌相关因素和皮下异位骨形成的早期和晚期成骨分化。 SHN3还抑制BMP9诱导的血管生成分化,表达血管生成相关因子,并在小鼠中皮下血管侵袭。机械地,我们发现SHN3显然抑制了BMP9的表达和BMP / SMAD和BMP / MAPK信号通路的激活。此外,我们进一步发现对Rount相关的转录因子2(Runx2),血管内皮生长因子(VEGF)和由BMP和SHN3信号传导途径共享的靶基因的活性。沉默SHN3可以显着增强RUNX2的表达,该表达直接调节下游靶VEGF与血管生成耦合骨质发生分化。总而言之,我们的研究结果表明SHN3显着抑制了HAMSCs中BMP9诱导的骨质发生分化和血管生成。通过抑制BMP / SMAD信号通路和RUNX2的抑制表达来看SHN3的效果,其直接调节VEGF,其将BMP9诱导的与血管生成的成骨分化相结合。

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