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首页> 外文期刊>Antioxidants and redox signalling >Cell cycle regulators guide mitochondrial activity in radiation-induced adaptive response
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Cell cycle regulators guide mitochondrial activity in radiation-induced adaptive response

机译:细胞周期调节剂指导线粒体在辐射诱导的适应性反应中的活动

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Significance: There are accruing concerns on potential genotoxic agents present in the environment including low-dose ionizing radiation (LDIR) that naturally exists on earth's surface and atmosphere and is frequently used in medical diagnosis and nuclear industry. Although its long-term health risk is being evaluated and remains controversial, LDIR is shown to induce temporary but significant adaptive responses in mammalian cells and animals. The mechanisms guiding the mitochondrial function in LDIR-induced adaptive response represent a unique communication between DNA damage and cellular metabolism. Elucidation of the LDIR-regulated mitochondrial activity may reveal new mechanisms adjusting cellular function to cope with hazardous environmental stress. Recent Advances: Key cell cycle regulators, including Cyclin D1/CDK4 and Cyclin B1/cyclin-dependent kinase 1 (CDK1) complexes, are actively involved in the regulation of mitochondrial functions via phosphorylation of their mitochondrial targets. Accumulating new evidence supports a concept that the Cyclin B1/CDK1 complex acts as a mediator in the cross talk between radiation-induced DNA damage and mitochondrial functions to coordinate cellular responses to low-level genotoxic stresses. Critical Issues: The LDIR-mediated mitochondrial activity via Cyclin B1/CDK1 regulation is an irreplaceable network that is able to harmonize vital cellular functions with adjusted mitochondrial metabolism to enhance cellular homeostasis. Future Directions: Further investigation of the coordinative mechanism that regulates mitochondrial activities in sublethal stress conditions, including LDIR, will reveal new insights of how cells cope with genotoxic injury and will be vital for future targeted therapeutic interventions that reduce environmental injury and cancer risk. Antioxid.
机译:启示:人们对环境中潜在的遗传毒性剂的关注日益增加,其中包括自然存在于地球表面和大气中的低剂量电离辐射(LDIR),经常用于医学诊断和核工业。尽管其长期健康风险正在评估中并且仍存在争议,但LDIR已显示出在哺乳动物细胞和动物中诱导暂时但重要的适应性反应。在LDIR诱导的适应性反应中指导线粒体功能的机制代表了DNA损伤与细胞代谢之间的独特交流。 LDIR调节线粒体活性的阐明可能揭示调节细胞功能以应对有害环境压力的新机制。最新进展:关键细胞周期调节剂,包括细胞周期蛋白D1 / CDK4和细胞周期蛋白B1 /细胞周期蛋白依赖性激酶1(CDK1)复合物,通过其线粒体靶点的磷酸化积极参与线粒体功能的调节。越来越多的新证据支持这样一种概念,即细胞周期蛋白B1 / CDK1复合体在辐射诱导的DNA损伤与线粒体功能之间的相互作用中充当介体,以协调细胞对低水平遗传毒性胁迫的反应。关键问题:通过细胞周期蛋白B1 / CDK1调控,LDIR介导的线粒体活性是不可替代的网络,能够通过调节线粒体代谢来协调重要的细胞功能,从而增强细胞稳态。未来方向:进一步研究调节致死性应激条件下线粒体活动的协调机制,包括LDIR,将揭示细胞如何应对遗传毒性损伤的新见解,对于将来减少环境损伤和癌症风险的靶向治疗干预至关重要。抗氧化。

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