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Evolving Concepts of Mitochondrial Dynamics

机译:不断发展的线粒体动力学概念

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The concept that mitochondria are highly dynamic is as widely accepted as it is untrue for a number of important contexts. Healthy mitochondria of the most energy-dependent and mitochondrial-rich mammalian organ, the heart, only rarely undergo fusion or fission and are seemingly static within cardiac myocytes. Here, we revisit mitochondrial dynamism with a fresh perspective developed from the recently discovered multifunctionality of mitochondrial fusion proteins and newly defined mechanisms for direct cross talk between mitochondrial dynamics, biogenesis, quality control, and trafficking pathways. Insights gained from comparing static mitochondrial biology in cardiac myocytes and dynamic mitochondrial biology in neurons are reviewed with the goal of understanding contextual fallacies of overly generalized characterizations of these essential and intriguing organelles.
机译:线粒体高度动态的概念与许多重要背景下的不真实一样广泛接受。 健康的线粒体中最能依赖和线粒体丰富的富含哺乳动物器官,心脏,只有很少经历融合或裂变,并且在心脏肌细胞内看似静态。 在这里,我们通过从最近发现的线粒体融合蛋白和新定义的机制进行线粒体动态,生物生成,质量控制和贩运途径,以从最近发现的多功能正常发育的新定义机制的新定义机制进行了新定义机制的新透视。 通过了解神经元心肌细胞和动态线粒体生物学中静态线粒体生物学的洞察力,综述了神经元的静态线粒体生物学的目的是了解这些必要和有趣的细胞器的过度概括表征的背景谬误。

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