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果蝇周期蛋白 D/Cdk4 调节线粒体生物发生和衰老,并使动物对低氧应激敏感。

Drosophila cyclin D/Cdk4 regulates mitochondrial biogenesis and aging and sensitizes animals to hypoxic stress.

机构信息

Basic Science Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.

出版信息

Cell Cycle. 2012 Feb 1;11(3):554-68. doi: 10.4161/cc.11.3.19062.

Abstract

Drosophila cyclinD (CycD) is the single fly ortholog of the mammalian cyclin D1 and promotes both cell cycle progression and cellular growth. However, little is known about how CycD promotes cell growth. We show here that CycD/Cdk4 hyperactivity leads to increased mitochondrial biogenesis (mitobiogenesis), mitochondrial mass, NRF-1 activity (Tfam transcript levels) and metabolic activity in Drosophila, whereas loss of CycD/Cdk4 activity has the opposite effects. Surprisingly, both CycD/Cdk4 addition and loss of function increase mitochondrial superoxide production and decrease lifespan, indicating that an imbalance in mitobiogenesis may lead to oxidative stress and aging. In addition, we provide multiple lines of evidence indicating that CycD/Cdk4 activity affects the hypoxic status of cells and sensitizes animals to hypoxia. Both mitochondrial and hypoxia-related effects can be detected at the global transcriptional level. We propose that mitobiogenesis and the hypoxic stress response have an antagonistic relationship, and that CycD/Cdk4 levels regulate mitobiogenesis contemporaneous to the cell cycle, such that only when cells are sufficiently oxygenated can they proliferate.

摘要

果蝇细胞周期蛋白 D(CycD)是哺乳动物细胞周期蛋白 D1 的单一果蝇同源物,促进细胞周期进程和细胞生长。然而,关于 CycD 如何促进细胞生长知之甚少。我们在这里表明,CycD/Cdk4 过度活跃会导致果蝇中线粒体生物发生(mitobiogenesis)、线粒体质量、NRF-1 活性(Tfam 转录水平)和代谢活性增加,而 CycD/Cdk4 活性丧失则会产生相反的效果。令人惊讶的是,CycD/Cdk4 的添加和功能丧失都会增加线粒体超氧化物的产生并降低寿命,表明线粒体生物发生的失衡可能导致氧化应激和衰老。此外,我们提供了多条证据表明,CycD/Cdk4 活性会影响细胞的缺氧状态,并使动物对缺氧敏感。线粒体和与缺氧相关的影响都可以在全转录组水平上检测到。我们提出,线粒体生物发生和缺氧应激反应之间存在拮抗关系,并且 CycD/Cdk4 水平在细胞周期的同时调节线粒体生物发生,使得只有当细胞充分氧合时,它们才能增殖。

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