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在线粒体静止期自噬中,线粒体动态参与线粒体基质蛋白的分离。

Involvement of mitochondrial dynamics in the segregation of mitochondrial matrix proteins during stationary phase mitophagy.

机构信息

1] The Institute for Biochemistry, Food Science, and Nutrition, Robert H. Smith Faculty of Agriculture, Food and Environment, Hebrew University of Jerusalem, P.O. Box 12, Rehovot, Israel 76100 [2] Surgical Neurology Branch, National Institute of Neurological Disorders and Stroke, Porter Neuroscience Research Center Building 35, Room 2C-917 35 Convent Drive, Bethesda, Maryland 20892-3704, USA.

出版信息

Nat Commun. 2013;4:2789. doi: 10.1038/ncomms3789.

Abstract

Mitophagy, the autophagic degradation of mitochondria, is an important housekeeping function in eukaryotic cells, and defects in mitophagy correlate with ageing phenomena and with several neurodegenerative disorders. A central mechanistic question regarding mitophagy is whether mitochondria are consumed en masse, or whether an active process segregates defective molecules from functional ones within the mitochondrial network, thus allowing a more efficient culling mechanism. Here we combine a proteomic study with a molecular genetics and cell biology approach to determine whether such a segregation process occurs in yeast mitochondria. We find that different mitochondrial matrix proteins undergo mitophagic degradation at distinctly different rates, supporting the active segregation hypothesis. These differential degradation rates depend on mitochondrial dynamics, suggesting a mechanism coupling weak physical segregation with mitochondrial dynamics to achieve a distillation-like effect. In agreement, the rates of mitophagic degradation strongly correlate with the degree of physical segregation of specific matrix proteins.

摘要

线粒体自噬,即线粒体的自噬降解,是真核细胞中的一种重要的自我维持功能,线粒体自噬的缺陷与衰老现象和几种神经退行性疾病有关。关于线粒体自噬的一个核心机制问题是,线粒体是整体被消耗,还是一个主动的过程将有缺陷的分子从线粒体网络中的功能分子中分离出来,从而允许更有效的清除机制。在这里,我们将蛋白质组学研究与分子遗传学和细胞生物学方法相结合,以确定酵母线粒体中是否存在这种分离过程。我们发现,不同的线粒体基质蛋白以明显不同的速度进行线粒体自噬降解,支持主动分离假说。这些差异降解速率取决于线粒体的动力学,这表明一种将弱物理分离与线粒体动力学相耦合的机制可以实现类似蒸馏的效果。一致地,线粒体自噬降解的速率与特定基质蛋白的物理分离程度强烈相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7ac/3909740/c74acf6947ae/nihms532790f1.jpg

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