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Discovery and implications of transcellular mitophagy

机译:跨细胞线粒体的发现及其意义

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摘要

The mitochondrial quality control system regulating mitochondria biogenesis, dynamics, and degradation has been extensively studied because of its roles in normal cell homeostasis and dysfunction due to aging or disease. Mitochondria degradation is generally thought to occur by autophagy and has therefore been viewed as a cell-autonomous process. In a recent study, we demonstrated that a large fraction of retinal ganglion cell mitochondria undergo lysosomal degradation within the astrocytes of the optic nerve head. It will be important to determine whether other neurons with long axons also use transcellular mitophagy, or transmitophagy, as a primary mitochondrial quality control mechanism either under normal physiological conditions or in disease. The elucidation of the underlying molecular mechanisms is necessary to determine whether defects in transmitophagy are involved in pathogenesis and whether it should become a therapeutic target.
机译:调节线粒体生物发生,动力学和降解的线粒体质量控制系统已被广泛研究,因为它在正常的细胞稳态和衰老或疾病引起的功能障碍中发挥作用。线粒体降解通常被认为是通过自噬发生的,因此被视为细胞自主过程。在最近的研究中,我们证明了大部分视网膜神经节细胞线粒体在视神经头的星形胶质细胞内经历了溶酶体降解。确定在正常的生理条件下或在疾病中,其他长轴突神经元是否也使用跨细胞线粒体吞噬或传输吞噬作为主要的线粒体质量控制机制,这一点很重要。阐明潜在的分子机制对于确定吞噬缺陷是否与发病机理有关以及是否应成为治疗靶点很有必要。

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