Department of Radiation Oncology, School of Medicine, University of California at Davis, Sacramento, CA, USA.
Department of Radiation Oncology, School of Medicine, University of California at Davis, Sacramento, CA, USA.
Cancer Lett. 2019 Feb 28;443:56-66. doi: 10.1016/j.canlet.2018.11.019. Epub 2018 Nov 24.
A mammalian cell houses two genomes located separately in the nucleus and mitochondria. During evolution, communications and adaptations between these two genomes occur extensively to achieve and sustain homeostasis for cellular functions and regeneration. Mitochondria provide the major cellular energy and contribute to gene regulation in the nucleus, whereas more than 98% of mitochondrial proteins are encoded by the nuclear genome. Such two-way signaling traffic presents an orchestrated dynamic between energy metabolism and consumption in cells. Recent reports have elucidated the way how mitochondrial bioenergetics synchronizes with the energy consumption for cell cycle progression mediated by cyclin B1/CDK1 as the communicator. This review is to recapitulate cyclin B1/CDK1 mediated mitochondrial activities in cell cycle progression and stress response as well as its potential link to reprogram energy metabolism in tumor adaptive resistance. Cyclin B1/CDK1-mediated mitochondrial bioenergetics is applied as an example to show how mitochondria could timely sense the cellular fuel demand and then coordinate ATP output. Such nucleus-mitochondria oscillation may play key roles in the flexible bioenergetics required for tumor cell survival and compromising the efficacy of anti-cancer therapy. Further deciphering the cyclin B1/CDK1-controlled mitochondrial metabolism may invent effect targets to treat resistant cancers.
哺乳动物细胞内有两个基因组,分别位于细胞核和线粒体中。在进化过程中,这两个基因组之间广泛地进行着信息交流和适应性调整,以实现和维持细胞功能和再生的内稳态。线粒体为细胞提供主要的能量,并参与核基因调控,而超过 98%的线粒体蛋白由核基因组编码。这种双向信号传递呈现出细胞能量代谢和消耗之间的协调动态。最近的报告阐明了线粒体生物能学如何与 cyclin B1/CDK1 介导的细胞周期进程中能量消耗同步的方式,cyclin B1/CDK1 作为通讯器。这篇综述旨在回顾 cyclin B1/CDK1 介导的线粒体活性在细胞周期进程和应激反应中的作用,以及其与肿瘤适应性耐药中重新编程能量代谢的潜在联系。以 cyclin B1/CDK1 介导的线粒体生物能学为例,展示了线粒体如何及时感知细胞燃料需求,然后协调 ATP 输出。这种核-线粒体振荡可能在肿瘤细胞生存所需的灵活生物能学中发挥关键作用,并影响抗癌治疗的效果。进一步解析 cyclin B1/CDK1 控制的线粒体代谢可能会发明有效的治疗耐药性癌症的靶标。