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首页> 外文期刊>The Journal of biological chemistry >Alteration of Mitochondrial Proteome Due to Activation of Notch1 Signaling Pathway
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Alteration of Mitochondrial Proteome Due to Activation of Notch1 Signaling Pathway

机译:由于Notch1信号通路活化导致线粒体蛋白质组的改变

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The Notch signaling pathway, a known regulator of cell fate decisions, proliferation, and apoptosis, has recently been implicated in the regulation of glycolysis, which affects tumor progression. However, the impact of Notch on other metabolic pathways remains to be elucidated. To gain more insights into the Notch signaling and its role in regulation of metabolism, we studied the mitochondrial proteome in Notch1-activated K562 cells using a comparative proteomics approach. The proteomic study led to the identification of 10 unique proteins that were altered due to Notch1 activation. Eight of these proteins belonged to mitochondria-localized metabolic pathways like oxidative phosphorylation, glutamine metabolism, Krebs cycle, and fatty acid oxidation. Validation of some of these findings showed that constitutive activation of Notch1 deregulated glutamine metabolism and Complex 1 of the respiratory chain. Furthermore, the deregulation of glutamine metabolism involved the canonical Notch signaling and its downstream effectors. The study also reports the effect of Notch signaling on mitochondrial function and status of high energy intermediates ATP, NADH, and NADPH. Thus our study shows the effect of Notch signaling on mitochondrial proteome, which in turn affects the functioning of key metabolic pathways, thereby connecting an important signaling pathway to the regulation of cellular metabolism.
机译:陷波信号传导途径,最近的细胞命运决策,增殖和凋亡的已知调节剂,最近涉及糖酵解的调节,这影响肿瘤进展。然而,陷波对其他代谢途径的影响仍有待阐明。为了利用比较蛋白质组学方法研究Notch1激活的K562细胞中的线粒体蛋白质,在Notch1激活的K562细胞中研究了更多的洞察力和其在调节中的角色。蛋白质组学研究导致鉴定10种独特的蛋白质,由于Notch1活化而被改变。这些蛋白质中的八种属于线粒体局部化代谢途径,如氧化磷酸化,谷氨酰胺代谢,克雷布斯循环和脂肪酸氧化。一些这些发现的验证表明,Notch1解毒谷氨酰胺代谢和呼吸链复合1的组成型激活。此外,谷氨酰胺代谢的放松​​管制涉及规范缺口信号传导及其下游效应。该研究还报告了Notch信号传导对线粒体功能和高能量中间体ATP,NADH和NADPH的状态的影响。因此,我们的研究表明了Notch信号传导对线粒体蛋白质组的影响,这反过来影响关键代谢途径的功能,从而将重要的信号通路连接到细胞代谢的调节。

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