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结构包含 Atg9A 和 ULK1 复合物,可在 Parkin 介导的线粒体自噬的初始阶段独立靶向去极化的线粒体。

Structures containing Atg9A and the ULK1 complex independently target depolarized mitochondria at initial stages of Parkin-mediated mitophagy.

机构信息

Department of Physiology and Cell Biology, Tokyo Medical and Dental University, Tokyo 113-8519, Japan.

出版信息

J Cell Sci. 2012 Mar 15;125(Pt 6):1488-99. doi: 10.1242/jcs.094110. Epub 2012 Jan 24.

DOI:10.1242/jcs.094110
PMID:22275429
Abstract

Mitochondria can be degraded by autophagy in a process termed mitophagy. The Parkinson-disease-associated ubiquitin ligase Parkin can trigger mitophagy of depolarized mitochondria. However, it remains to be determined how the autophagy machinery is involved in this specific type of autophagy. It has been speculated that adaptor proteins such as p62 might mediate the interaction between the autophagosomal LC3 family of proteins and ubiquitylated proteins on mitochondria. Here, we describe our systematic analysis of the recruitment of Atg proteins in Parkin-dependent mitophagy. Structures containing upstream Atg proteins, including ULK1, Atg14, DFCP1, WIPI-1 and Atg16L1, can associate with depolarized mitochondria even in the absence of membrane-bound LC3. Atg9A structures are also recruited to these damaged mitochondria as well as to the autophagosome formation site during starvation-induced canonical autophagy. In the initial steps of Parkin-mediated mitophagy, the structures containing the ULK1 complex and Atg9A are independently recruited to depolarized mitochondria and both are required for further recruitment of downstream Atg proteins except LC3. Autophagosomal LC3 is important for efficient incorporation of damaged mitochondria into the autophagosome at a later stage. These findings suggest a process whereby the isolation membrane is generated de novo on damaged mitochondria as opposed to one where a preformed isolation membrane recognizes mitochondria.

摘要

线粒体可以通过自噬作用被降解,这个过程被称为线粒体自噬。帕金森病相关的泛素连接酶 Parkin 可以触发去极化线粒体的线粒体自噬。然而,自噬机制如何参与这种特定类型的自噬仍有待确定。有人推测,衔接蛋白如 p62 可能介导自噬体 LC3 家族蛋白与线粒体上泛素化蛋白之间的相互作用。在这里,我们描述了我们对 Parkin 依赖性线粒体自噬中 Atg 蛋白募集的系统分析。包含上游 Atg 蛋白的结构,包括 ULK1、Atg14、DFCP1、WIPI-1 和 Atg16L1,可以与去极化的线粒体结合,即使在没有膜结合 LC3 的情况下也是如此。Atg9A 结构也被招募到这些受损的线粒体以及饥饿诱导的经典自噬过程中的自噬体形成部位。在 Parkin 介导的线粒体自噬的初始步骤中,包含 ULK1 复合物和 Atg9A 的结构独立地被招募到去极化的线粒体,并且除了 LC3 之外,两者都需要进一步募集下游的 Atg 蛋白。自噬体 LC3 对于在后期将受损的线粒体有效纳入自噬体非常重要。这些发现表明,隔离膜是在受损的线粒体上从头生成的,而不是预先形成的隔离膜识别线粒体。