线粒体作为铁下垂的多方面调节因子

Life metabolism Pub Date : 2022-11-25 eCollection Date: 2022-10-01 DOI:10.1093/lifemeta/loac035
Jingyi Guo, Yunhao Zhou, Dingfei Liu, Mengfei Wang, Yi Wu, Daolin Tang, Xingguo Liu
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摘要

众所周知,线粒体是细胞的“能量工厂”,因为它们通过氧化磷酸化提供细胞内ATP。有趣的是,它们还起着“细胞自杀武器库”的作用,充当各种形式的调节细胞死亡的关键介质,包括细胞凋亡、焦下垂、坏死和脱铁。脱铁症不同于其他类型的调节性细胞死亡,其特征是铁依赖性脂质过氧化和随后的质膜破裂。越来越多的证据表明,脱铁反应受损与各种疾病和病理条件有关,这种反应受损与线粒体形态和功能的显著变化有关。线粒体是铁代谢和能量产生的中心,导致脂质过氧化敏感性的改变。尽管越来越多的研究探索了线粒体和脱铁性贫血之间不可分割的联系,但这种细胞器在调节脱铁性腹泻中的作用仍不清楚。在此,我们回顾了线粒体在脱铁性贫血中作用的最新进展,并总结了这种新型铁基细胞自杀武器及其武器库的特点。我们还讨论了脱铁症在病理生理学中的重要性,包括需要进一步了解线粒体和脱铁症之间的关系,以确定对成功发现药物至关重要的组合靶点。
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Mitochondria as multifaceted regulators of ferroptosis.

Mitochondria are well known to be "energy factories" of the cell as they provide intracellular ATP via oxidative phosphorylation. Interestingly, they also function as a "cellular suicidal weapon store" by acting as a key mediator of various forms of regulated cell death, including apoptosis, pyroptosis, necroptosis, and ferroptosis. Ferroptosis, distinct from the other types of regulated cell death, is characterized by iron-dependent lipid peroxidation and subsequent plasma membrane rupture. Growing evidence suggests that an impaired ferroptotic response is implicated in various diseases and pathological conditions, and this impaired response is associated with dramatic changes in mitochondrial morphology and function. Mitochondria are the center of iron metabolism and energy production, leading to altered lipid peroxidation sensitivity. Although a growing number of studies have explored the inextricable link between mitochondria and ferroptosis, the role of this organelle in regulating ferroptosis remains unclear. Here, we review recent advances in our understanding of the role of mitochondria in ferroptosis and summarize the characteristics of this novel iron-based cellular suicide weapon and its arsenal. We also discuss the importance of ferroptosis in pathophysiology, including the need for further understanding of the relationship between mitochondria and ferroptosis to identify combinatorial targets that are essential for the development of successful drug discovery.

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