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Mitochondrial dynamics in the regulation of nutrient utilization and energy expenditure

机译:线粒体动力学在营养利用和能量消耗调节中的作用

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摘要

Mitochondrial fusion, fission, and mitophagy form an essential axis of mitochondrial quality control. However, quality control might not be the only task carried out by mitochondrial dynamics. Recent studies link mitochondrial dynamics to the balance between energy demand and nutrient supply, suggesting changes in mitochondrial architecture as a mechanism for bioenergetic adaptation to metabolic demands. By favoring either connected or fragmented architectures, mitochondrial dynamics regulates bioenergetic efficiency and energy expenditure. Placement of bioenergetic adaptation and quality control as competing tasks of mitochondrial dynamics might provide a new mechanism, linking excess nutrient environment to progressive mitochondrial dysfunction, common to age-related diseases.
机译:线粒体融合,裂变和线粒体形成线粒体质量控制的重要轴。但是,质量控制可能不是线粒体动力学执行的唯一任务。最近的研究将线粒体动力学与能量需求和养分供应之间的平衡联系起来,表明线粒体结构的变化是生物能适应代谢需求的一种机制。通过支持连接的或碎片化的体系结构,线粒体动力学调节了生物能效率和能量消耗。将生物能适应和质量控制作为线粒体动力学竞争性任务的放置,可能提供一种新的机制,将过多的营养环境与进行性线粒体功能障碍联系在一起,这是与年龄有关的疾病。

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