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首页> 外文期刊>American Journal of Physiology >Embryonic stem cell differentiation into smooth muscle cells is mediated by Nox4-produced H_2O_2
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Embryonic stem cell differentiation into smooth muscle cells is mediated by Nox4-produced H_2O_2

机译:将胚胎干细胞分化到平滑肌细胞中由NOx4制作的H_2O_2介导

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NADPH oxidase (Nox4) produces reactive oxygen species (ROS) that are important for vascular smooth muscle cell (SMC) behavior, but the potential impact of Nox4 in stem cell differentiation is unknown. When mouse embryonic stem (ES) cells were plated on collagen IV-coated dishes/flasks, a panel of SMC-specific genes was significantly and consistently upregulated. Nox4 expression was markedly correlated with such a gene induction as confirmed by real-time PCR, immunofluorescence, and Western blot analysis. Overexpression of Nox4 specifically resulted in increased SMC marker production, whereas knockdown of Nox4 induced a decrease. Furthermore, SMC-specific transcription factors, including serum response factor (SRF) and myocardin were activated by Nox4 gene expression. Moreover, Nox4 was demonstrated to drive SMC differentiation through generation of H_2O_2. Confocal microscopy analysis indicates that SRF was translocated into the nucleus during SMC differentiation in which SRF was phosphorylated. Additionally, autosecreted transforming growth factor (TGF)-β1 activated Nox4 and promoted SMC differentiation. Interestingly, cell lines generated from stem cells by Nox4 transfection and G418 selection displayed a characteristic of mature SMCs, including expression of SMC markers and cells with contractile function. Thus we demonstrate for the first time that Nox4 is crucial for SMC differentiation from ES cells, and enforced Nox4 expression can maintain differentiation status and functional features of stem cell-derived SMCs, highlighting its impact on vessel formation in vivo and vascular tissue engineering in the future.
机译:NADPH氧化酶(NOX4)产生对血管平滑肌细胞(SMC)行为重要的反应性氧物质(ROS),但NOX4在干细胞分化中的潜在影响是未知的。当将小鼠胚胎茎(ES)细胞涂覆​​在胶原IV涂层的肉菜/烧瓶上时,显着且持续上调SMC特异性基因面板。与通过实时PCR,免疫荧光和蛋白质印迹分析证实的这种基因诱导明显相关。 NOX4的过度表达明显导致SMC标记产生增加,而NOX4的敲低诱导降低。此外,通过NOx4基因表达激活SMC特异性转录因子,包括血清反应因子(SRF)和Myocardin。此外,证明了NOX4通过产生H_2O_2驱动SMC分化。共聚焦显微镜分析表明,在SRF磷酸化的SMC分化期间,SRF在核中易于转化为细胞核。另外,自身分泌转化生长因子(TGF)-β1活化NOx4并促进SMC分化。有趣的是,从干细胞通过NOx4转染产生的细胞系和G418选择显示了成熟的SMC的特征,包括SMC标记和具有收缩功能的细胞的表达。因此,我们首次证明NOX4对于来自ES细胞的SMC分化至关重要,并且强制NOX4表达可以维持干细胞衍生SMC的分化状态和功能特征,突出其对体内和血管组织工程的影响未来。

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