Department of Pathology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.
J Biol Chem. 2010 Jan 8;285(2):1371-83. doi: 10.1074/jbc.M109.054197. Epub 2009 Nov 12.
Autophagosomes and their precursors are best defined by electron microscopy but may also be traced in living cells based on the distribution of specific autophagy molecules. LC3, the most commonly examined autophagy marker in mammalian cells, labels structures that are frequently manifested as dots or rings using light microscopy; however, the nature of these structures is not entirely clear. We reported here a novel approach to examine the LC3-positive compartment in cell-free lysates, which revealed that they were actually tubulovesicular structures with considerable heterogeneity. Using affinity purification, we isolated these membranes for electron microscopy, which indicated that they possessed ultrastructural features consistent with autophagosomal membranes at various maturation stages. Further biochemical and proteomics analyses demonstrated the presence of multiple autophagy-related and other functional molecules. The different distribution patterns of Atg5, Atg16, Atg9, and p62/SQSTM1 on the LC3-positive compartment provided new clues on how these molecules might be involved in the dynamics of the autophagosomal membranes. Finally, several morphologically unique groups of LC3-positive membranes were categorized. Their topological configurations suggested that double-membrane vesicles could be derived from single membrane compartments via different means, including tubule-to-vesicle conversion, whose presence was supported by live cell imaging. These findings thus provide new information on the dynamics of the autophagosomal compartment.
自噬体及其前体最好通过电子显微镜来定义,但也可以基于特定自噬分子的分布在活细胞中追踪。LC3 是哺乳动物细胞中最常被检测的自噬标志物,它标记的结构在光镜下通常表现为点状或环状;然而,这些结构的性质尚不完全清楚。我们在这里报告了一种新的方法来研究细胞游离裂解物中的 LC3 阳性区室,结果表明它们实际上是具有相当异质性的管状囊泡结构。通过亲和纯化,我们将这些膜分离出来进行电子显微镜观察,结果表明它们具有与各种成熟阶段的自噬体膜一致的超微结构特征。进一步的生化和蛋白质组学分析表明,存在多种与自噬相关的和其他功能分子。Atg5、Atg16、Atg9 和 p62/SQSTM1 在 LC3 阳性区室上的不同分布模式为这些分子如何参与自噬体膜的动态提供了新的线索。最后,对几种形态独特的 LC3 阳性膜进行了分类。它们的拓扑结构表明,双层膜泡可以通过不同的方式从单膜区室衍生而来,包括管到泡的转化,活细胞成像支持其存在。这些发现为自噬体区室的动力学提供了新的信息。