a Research Institute for Science and Technology , Kogakuin University , Hachioji, Tokyo , Japan.
b Major of Informatics , Graduate School, Kogakuin University , Hachioji, Tokyo , Japan.
Autophagy. 2019 Mar;15(3):423-437. doi: 10.1080/15548627.2018.1525475. Epub 2018 Oct 11.
Macroautophagy (hereafter autophagy) is a conserved intracellular degradation mechanism required for cell survival. A double-membrane structure, the phagophore, is generated to sequester cytosolic cargos destined for degradation in the vacuole. The mechanism involved in the biogenesis of the phagophore is still an open question. We focused on 4 autophagy-related (Atg) proteins (Atg2, Atg9, Atg14, and Atg18), which are involved in the formation of the phagophore in order to gain a more complete understanding of the membrane dynamics that occur during formation of the autophagosome. The corresponding mutants, while defective in autophagy, nonetheless generate the membrane-bound form of Atg8, allowing us to use this protein as a marker for the nascent autophagosome precursor membrane. Using electron microscopy (EM), we discovered in these atg mutants a novel single-membrane structure (~120 to 150 nm in size). Electron tomography revealed that this structure originates from a part of the nuclear membrane, and we have named it the alphasome. Our data suggest that the alphasome is associated with Atg8, and sequesters selective cargo, the Cvt complex, during autophagy. Abbreviations: 3D: three-dimensional; AB: autophagic body; AP: autophagosome; Atg: autophagy-related; Cvt: cytoplasm-to-vacuole targeting; EM: electron microscopy; IEM: immunoelectron microscopy; L: lipid droplet; N: nucleus; NM: nuclear membrane; PAS: phagophore assembly site; PE: phosphatidylethanolamine; prApe1: precursor aminopeptidase I; rER: rough endoplasmic reticulum; TEM: transmission electron microscopy; V: vacuole; VLP: virus-like particle.
自噬作用(下文简称自噬)是一种细胞内的降解机制,对细胞存活至关重要。双层膜结构——噬泡,形成并包裹细胞质中的降解物质,进入液泡。噬泡生物发生的机制仍存在争议。我们集中研究了 4 种与自噬相关的(Atg)蛋白(Atg2、Atg9、Atg14 和 Atg18),它们参与噬泡的形成,以便更全面地了解自噬体形成过程中的膜动力学。虽然相应的突变体在自噬过程中存在缺陷,但仍会产生与膜结合的 Atg8 形式,使我们能够将该蛋白用作新生自噬体前体膜的标记。通过电子显微镜(EM),我们在这些 atg 突变体中发现了一种新的单膜结构(大小约为 120 至 150nm)。电子断层扫描显示,这种结构起源于核膜的一部分,我们将其命名为α-体。我们的数据表明,α-体与 Atg8 相关,并在自噬过程中隔离选择性货物——Cvt 复合物。缩写:3D:三维;AB:自噬体;AP:自噬体;Atg:自噬相关;Cvt:细胞质到液泡靶向;EM:电子显微镜;IEM:免疫电子显微镜;L:脂滴;N:核;NM:核膜;PAS:噬泡组装位点;PE:磷脂酰乙醇胺;prApe1:前导氨肽酶 I;rER:粗面内质网;TEM:透射电子显微镜;V:液泡;VLP:病毒样颗粒。