Neuron-periphery mitochondrial stress communication in aging and diseases

Jiasheng Li, Jimeng Cui, Ye Tian
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引用次数: 3

Abstract

The nervous system is the central hub of the body, detecting environmental and internal stimuli to regulate organismal metabolism via communications to the peripheral tissues. Mitochondria play an essential role in neuronal activity by supplying energy, maintaining cellular metabolism, and buffering calcium levels. A variety of mitochondrial conditions are associated with aging and age-related neurological disorders. Beyond regulating individual neuron cells, mitochondria also coordinate signaling in tissues and organs during stress conditions to mediate systemic metabolism and enable organisms to adapt to such stresses. In addition, peripheral organs and immune cells can also produce signaling molecules to modulate neuronal function. Recent studies have found that mitokines released upon mitochondrial stresses affect metabolism and the physiology of different tissues and organs at a distance. Here, we summarize recent advances in understanding neuron-periphery mitochondrial stress communication and how mitokine signals contribute to the systemic regulation of metabolism and aging with potential implications for therapeutic strategies.
衰老和疾病中的神经元-外周线粒体应激通讯
神经系统是身体的中枢,通过与周围组织的交流,检测环境和内部刺激,调节机体代谢。线粒体通过提供能量、维持细胞代谢和缓冲钙水平在神经元活动中发挥重要作用。多种线粒体疾病与衰老和与年龄相关的神经系统疾病有关。除了调节单个神经元细胞外,线粒体还在应激条件下协调组织和器官的信号传导,介导全身代谢,使生物体适应这种应激。此外,外周器官和免疫细胞也可以产生信号分子来调节神经元功能。近年来的研究发现,线粒体应激释放的丝裂因子远距离影响不同组织器官的代谢和生理。在这里,我们总结了最近在理解神经元-外周线粒体应激通讯以及分裂因子信号如何促进代谢和衰老的系统性调节方面的进展,并对治疗策略有潜在的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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