首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Mitochondrial metabolism contributes to oxidative stress and reveals therapeutic targets in chronic lymphocytic leukemia
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Mitochondrial metabolism contributes to oxidative stress and reveals therapeutic targets in chronic lymphocytic leukemia

机译:线粒体代谢促进氧化应激并揭示慢性淋巴细胞白血病的治疗靶点

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摘要

Alterations of cellular metabolism represent a hallmark of cancer. Numerous metabolic changes are required for malignant transformation, and they render malignant cells more prone to disturbances in the metabolic framework. Despite the high incidence of chronic lymphocytic leukemia (CLL), metabolism of CLL cells remains a relatively unexplored area. The examined untreated CLL patients displayed a metabolic condition known as oxidative stress, which was linked to alterations in their lymphoid compartment. Our studies identified mitochondrial metabolism as the key source for abundant reactive oxygen species (ROS). Unlike in other malignant cells, we found increased oxidative phosphorylation in CLL cells but not increased aerobic glycolysis. Furthermore, CLL cells adapted to intrinsic oxidative stress by upregulating the stress-responsive heme-oxygenase-1 (HO-1). Our data implicate that HO-1 was, beyond its function as an antioxidant, involved in promoting mitochondrial biogenesis. Thus ROS, adaptation to ROS, and mitochondrial biogenesis appear to form a self-amplifying feedback loop in CLL cells. Taking advantage of the altered metabolic profile, we were able to selectively target CLL cells by PK11195. This benzodiazepine derivate blocks the mitochondrial F1F0-ATPase, leads to a surplus production of mitochondrial superoxide, and thereby induces cell death in CLL cells. Taken together, our findings depict how bioenergetics and redox characteristics could be therapeutically exploited in CLL.
机译:细胞代谢的改变代表了癌症的标志。恶性转化需要大量的代谢变化,并且它们使恶性细胞更倾向于代谢框架的紊乱。尽管慢性淋巴细胞白血病(CLL)的发生率很高,但CLL细胞的代谢仍是一个相对未开发的领域。接受检查的未经治疗的CLL患者表现出一种称为氧化应激的代谢状况,这与其淋巴区隔的改变有关。我们的研究确定线粒体代谢是丰富的活性氧(ROS)的关键来源。与其他恶性细胞不同,我们发现CLL细胞中的氧化磷酸化增加,但有氧糖酵解没有增加。此外,CLL细胞通过上调应激反应性血红素加氧酶-1(HO-1)来适应固有的氧化应激。我们的数据表明,HO-1除其作为抗氧化剂的功能外,还参与促进线粒体的生物发生。因此,ROS,对ROS的适应性和线粒体生物发生似乎在CLL细胞中形成了自扩增反馈环。利用改变的代谢特征,我们能够通过PK11195选择性靶向CLL细胞。该苯二氮卓衍生物阻止线粒体F1F0-ATPase,导致线粒体超氧化物的过量产生,从而诱导CLL细胞死亡。综上所述,我们的发现描述了如何在CLL中治疗性利用生物能和氧化还原特性。

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