...
首页> 外文期刊>Redox Biology >KLF2 regulates dental pulp-derived stem cell differentiation through the induction of mitophagy and altering mitochondrial metabolism
【24h】

KLF2 regulates dental pulp-derived stem cell differentiation through the induction of mitophagy and altering mitochondrial metabolism

机译:KLF2通过诱导炸药和改变线粒体代谢来调节牙髓培养的干细胞分化

获取原文
   

获取外文期刊封面封底 >>

       

摘要

To define the regulatory role of Kruppel-like factor 2 ( KLF2 ) during osteoblast (OB) differentiation of dental pulp-derived stem cell (DPSC)s, herein, we show that the levels of KLF2 and autophagy-related molecules were significantly increased in differentiated cells. Gain-of-function and loss-of-function approaches of KLF2 confirmed that KLF2 modulated autophagic and OB differentiation-related molecules. In addition, knockdown of the autophagic molecule ( ATG7 or BECN1 ) in DPSCs resulted in reduced levels of KLF2 and OB differentiation-related molecules. Conversely, the induction of autophagy increased levels of KLF2 and OB differentiation-related molecules. Moreover, OB differentiation induced mitophagy and mitochondrial membrane potential-related molecules. In addition, OB differentiation reduced the generation of total and mitochondrial ROS productions and induced intracellular Ca2 production. Measurements of glycolysis and oxidative phosphorylation simultaneously in live cells revealed that OB differentiation decreased the oxygen consumption rate, which is an indicator of mitochondrial respiration and reduced the level of ATP production. Furthermore, flux analysis also revealed that OB differentiation increased the extracellular acidification rate (ECAR) in the non-glycolytic acidification, and the glycolytic capacity conditions, increasing the lactate production and reducing the metabolic activity of the cells. Thus, a metabolic shift from mitochondrial respiration to the glycolytic pathway was observed during OB differentiation. Finally, chromatin immunoprecipitation (ChIP) analysis confirmed that the KLF2 and active epigenetic marks (H3K27Ac and H3K4me3) were upregulated in the promoter region of ATG7 during OB differentiation. These results provide evidence that the mitophagy process is important during OB differentiation, and KLF2 critically regulates it.
机译:为了在牙科培养型干细胞(DPSC)的分化期间定义KRUPPEL样因子2(KLF2)的调节作用,在此,我们表明KLF2和自噬相关分子的水平显着增加分化细胞。 KLF2的功能性和功能丧失方法证实了KLF2调制的自噬和OB分化相关的分子。此外,DPSC中的自噬分子(ATG7或BECN1)的敲低导致KLF2和OB分化相关分子的水平降低。相反,诱导自噬增加的KLF2和OB分化相关分子。此外,OB分化诱导的乳化物和线粒体膜电位相关分子。此外,OB分化减少了总和线粒体ROS生产的产生,并诱导细胞内Ca2产生。在活细胞中同时测量糖酵解和氧化磷酸化显示,OB分化降低了氧气消耗率,这是线粒体呼吸和降低ATP生产水平的指标。此外,助焊剂分析还显示OB分化增加了非糖酵解酸化的细胞外酸化速率(Ecar),以及糖蛋白能力条件,增加乳酸产生并降低细胞的代谢活性。因此,在OB分化期间观察到从线粒体呼吸到糖酵解途径的代谢移位。最后,染色质免疫沉淀(芯片)分析证实,在OB分化期间,在ATG7的启动子区中上调KLF 2和活性表观遗传标记(H3K27AC和H3K4ME3)。这些结果提供了证据表明,在ob差异化期间,水道过程很重要,而KLF2致力于调节它。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号