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The regulation of mitochondrial dynamics

机译:线粒体动力学的调节

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The structure of mitochondria is highly dynamic. Mitochondrial shape is cell-type specific and can be modified to meet changing requirements in energy production, calcium homeostasis, lipid biogenesis, fatty acid synthesis and other mitochondrial activities. This is achieved by modulating the dynamic properties of mitochondria including fusion, division, movement and positional tethering. It has become increasingly evident that mitochondrial dynamics also play an intimate role in several cellular signaling pathways and as such, many mechanisms have evolved to modulate mitochondria! structure. These regulatory mechanisms turn out to be important for modulation of mitochondrial-specific processes as well as cell, tissue and organism responses to developmental or environmental cues
机译:线粒体的结构是高度动态的。线粒体的形状是特定于细胞类型的,可以修改以满足能量生产,钙稳态,脂质生物发生,脂肪酸合成和其他线粒体活动方面不断变化的要求。这是通过调节线粒体的动态特性来实现的,包括融合,分裂,运动和位置束缚。越来越明显的是,线粒体动力学在几种细胞信号传导途径中也起着密切的作用,因此,许多机制已经发展到调节线粒体!结构体。这些调节机制对于调节线粒体特异性过程以及细胞,组织和生物体对发育或环境线索的反应至关重要

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