A Review on the Mechanisms of Mitochondrial Dynamics and the Relationship with Neurodegeneration

Yanan Zhu
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Abstract

Mitochondrial health underlies many critical processes in the cell, and the health of the mitochondria is in turn regulated by mitochondrial dynamics -- the joint processes of mitochondrial fission, fusion and trafficking within the cell. The role of mitochondrial dynamics in regulating both ATP production and apoptosis via maintaining mitochondrial morphology has only recently been described. In particular, this regulation is a key etiology for neurodegenerative diseases due to the high energetic requirement of neural cells. Although the central effectors of fusion and fission have been identified, little is known about how accessory proteins and regulatory networks affect context-dependent and temporal changes in the mitochondrial network. In this review, we will mainly focus on the mechanisms of mitochondrial fission, fusion and trafficking, as well as the regulation in neurodegenerative diseases, hoping to provide a new direction for the future researches and the treatments of neurodegenerative diseases by regulating mitochondrial dynamics.
线粒体动力学机制及其与神经退行性变的关系研究进展
线粒体的健康是细胞中许多关键过程的基础,而线粒体的健康反过来又受到线粒体动力学的调节——细胞内线粒体裂变、融合和运输的联合过程。线粒体动力学通过维持线粒体形态在调节ATP产生和凋亡中的作用直到最近才被描述。特别是,由于神经细胞的高能量需求,这种调节是神经退行性疾病的关键病因。虽然已经确定了融合和裂变的中心效应,但对于辅助蛋白和调节网络如何影响线粒体网络中的环境依赖性和时间变化,我们知之甚少。本文就线粒体分裂、融合、转运的机制及其在神经退行性疾病中的调控作一综述,希望为今后的研究和通过线粒体动力学调控神经退行性疾病的治疗提供新的方向。
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