Padman Benjamin Scott, Nguyen Thanh Ngoc, Lazarou Michael
a Department of Biochemistry and Molecular Biology , Biomedicine Discovery Institute, Monash University , Melbourne , Australia.
Autophagy. 2017 Apr 3;13(4):772-774. doi: 10.1080/15548627.2017.1281492. Epub 2017 Feb 6.
It has been widely assumed that Atg8 family LC3/GABARAP proteins are essential for the formation of autophagosomes during macroautophagy/autophagy, and the sequestration of cargo during selective autophagy. However, there is little direct evidence on the functional contribution of these proteins to autophagosome biogenesis in mammalian cells. To dissect the functions of LC3/GABARAPs during starvation-induced autophagy and PINK1-PARK2/Parkin-dependent mitophagy, we used CRISPR/Cas9 gene editing to generate knockouts of the LC3 and GABARAP subfamilies, and all 6 Atg8 family proteins in HeLa cells. Unexpectedly, the absence of all LC3/GABARAPs did not prevent the formation of sealed autophagosomes, or selective engulfment of mitochondria during PINK1-PARK2-dependent mitophagy. Despite not being essential for autophagosome formation, the loss of LC3/GABARAPs affected both autophagosome size, and the efficiency at which they are formed. However, the critical autophagy defect in cells lacking LC3/GABARAPs was failure to drive autophagosome-lysosome fusion. Relative to the LC3 subfamily, GABARAPs were found to play a prominent role in autophagosome-lysosome fusion and recruitment of the adaptor protein PLEKHM1. Our work clarifies the essential contribution of Atg8 family proteins to autophagy in promoting autolysosome formation, and reveals the GABARAP subfamily as a key driver of starvation-induced autophagy and PINK1-PARK2-dependent mitophagy. Since LC3/GABARAPs are not essential for mitochondrial cargo sequestration, we propose an additional mechanism of selective autophagy. The model highlights the importance of ubiquitin signals and autophagy receptors for PINK-PARK2-mediated selectivity rather than Atg8 family-LIR-mediated interactions.
人们普遍认为,Atg8家族的LC3/GABARAP蛋白在巨自噬/自噬过程中对自噬体的形成以及选择性自噬过程中货物的隔离至关重要。然而,关于这些蛋白对哺乳动物细胞自噬体生物发生的功能贡献,几乎没有直接证据。为了剖析LC3/GABARAPs在饥饿诱导的自噬和PINK1-PARK2/帕金蛋白依赖性线粒体自噬中的功能,我们使用CRISPR/Cas9基因编辑技术在HeLa细胞中敲除了LC3和GABARAP亚家族以及所有6种Atg8家族蛋白。出乎意料的是,所有LC3/GABARAPs的缺失并未阻止密封自噬体的形成,也未阻止PINK1-PARK2依赖性线粒体自噬过程中线粒体的选择性吞噬。尽管LC3/GABARAPs对于自噬体形成并非必不可少,但它们的缺失影响了自噬体的大小及其形成效率。然而,缺乏LC3/GABARAPs的细胞中关键的自噬缺陷在于无法驱动自噬体-溶酶体融合。相对于LC3亚家族,发现GABARAPs在自噬体-溶酶体融合以及衔接蛋白PLEKHM1的招募中起重要作用。我们的工作阐明了Atg8家族蛋白在促进自噬溶酶体形成中对自噬的重要贡献,并揭示GABARAP亚家族是饥饿诱导的自噬和PINK1-PARK2依赖性线粒体自噬的关键驱动因素。由于LC3/GABARAPs对于线粒体货物隔离并非必不可少,我们提出了一种选择性自噬的额外机制。该模型强调了泛素信号和自噬受体对于PINK-PARK2介导的选择性的重要性,而非Atg8家族-LIR介导的相互作用。