Quantitative 3D correlative light and electron microscopy of organelle association during autophagy.

IF 2 4区 生物学 Q4 CELL BIOLOGY Cell structure and function Pub Date : 2022-12-22 Epub Date: 2022-11-22 DOI:10.1247/csf.22071
Satoru Takahashi, Chieko Saito, Ikuko Koyama-Honda, Noboru Mizushima
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引用次数: 7

Abstract

In macroautophagy, disk-shaped double-membrane structures called phagophores elongate to form cup-shaped structures, becoming autophagosomes upon closure. These autophagosomes then fuse with lysosomes to become autolysosomes and degrade engulfed material. Autophagosome formation is reported to involve other organelles, including the endoplasmic reticulum (ER) and mitochondria. Organelles are also taken up by autophagosomes as autophagy cargos. However, few studies have performed systematic spatiotemporal analysis of inter-organelle relationships during macroautophagy. Here, we investigated the organelles in contact with phagophores, autophagosomes, and autolysosomes by using three-dimensional correlative light and electron microscopy with array tomography in cells starved 30 min. As previously reported, all phagophores associate with the ER. The surface area of phagophores in contact with the ER decreases gradually as they mature into autophagosomes and autolysosomes. However, the ER still associates with 92% of autophagosomes and 79% of autolysosomes, suggesting that most autophagosomes remain on the ER after closure and even when they fuse with lysosomes. In addition, we found that phagophores form frequently near other autophagic structures, suggesting the presence of potential hot spots for autophagosome formation. We also analyzed the contents of phagophores and autophagosomes and found that the ER is the most frequently engulfed organelle (detected in 65% of total phagophores and autophagosomes). These quantitative three-dimensional ultrastructural data provide insights into autophagosome-organelle relationships during macroautophagy.Key words: 3D-CLEM, autophagosome, electron microscopy, endoplasmic reticulum, lysosome.

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自噬过程中细胞器关联的定量三维关联光镜和电子显微镜。
在巨噬过程中,称为吞噬体的圆盘状双膜结构伸长形成杯状结构,闭合后成为自噬体。这些自噬体随后与溶酶体融合成为自噬体并降解被吞噬的物质。据报道,自噬体的形成还涉及其他细胞器,包括内质网和线粒体。细胞器也被自噬体作为自噬的货物。然而,很少有研究对巨噬过程中细胞器间关系进行系统的时空分析。在这里,我们使用三维相关光学和电子显微镜阵列断层扫描研究了在饥饿30分钟的细胞中与吞噬体、自噬体和自溶体接触的细胞器。正如先前报道的那样,所有吞噬体都与内质网相关。随着吞噬体成熟为自噬体和自溶体,与内质网接触的吞噬体表面积逐渐减小。然而,内质网仍然与92%的自噬体和79%的自噬体结合,这表明大多数自噬体在关闭后甚至与溶酶体融合时仍留在内质网上。此外,我们发现吞噬体经常在其他自噬结构附近形成,这表明存在自噬体形成的潜在热点。我们还分析了吞噬细胞和自噬体的含量,发现内质网是最常被吞噬的细胞器(在65%的吞噬细胞和自噬体中检测到)。这些定量的三维超微结构数据提供了对巨噬过程中自噬体-细胞器关系的深入了解。关键词:3D-CLEM,自噬体,电镜,内质网,溶酶体
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来源期刊
Cell structure and function
Cell structure and function 生物-细胞生物学
CiteScore
2.50
自引率
0.00%
发文量
6
审稿时长
>12 weeks
期刊介绍: Cell Structure and Function is a fully peer-reviewed, fully Open Access journal. As the official English-language journal of the Japan Society for Cell Biology, it is published continuously online and biannually in print. Cell Structure and Function publishes important, original contributions in all areas of molecular and cell biology. The journal welcomes the submission of manuscripts on research areas such as the cell nucleus, chromosomes, and gene expression; the cytoskeleton and cell motility; cell adhesion and the extracellular matrix; cell growth, differentiation and death; signal transduction; the protein life cycle; membrane traffic; and organelles.
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