The Department of Biochemistry and Molecular Biology and Bio21 Molecular Science and Biotechnology Institute, The University of Melbourne, Melbourne, Victoria 3010, Australia.
Biological Optical Microscopy Platform, The University of Melbourne, Melbourne, Victoria 3010, Australia.
J Cell Sci. 2018 Feb 8;131(3):jcs211987. doi: 10.1242/jcs.211987.
In vertebrates, individual Golgi stacks are joined into a compact ribbon structure; however, the relevance of a ribbon structure has been elusive. Here, we exploit the finding that the membrane tether of the -Golgi network, GCC88 (encoded by ), regulates the balance between Golgi mini-stacks and the Golgi ribbon. Loss of Golgi ribbons in stable cells overexpressing GCC88 resulted in compromised mechanistic target of rapamycin (mTOR) signaling and a dramatic increase in LC3-II-positive autophagosomes, whereas RNAi-mediated depletion of GCC88 restored the Golgi ribbon and reduced autophagy. mTOR was absent from dispersed Golgi mini-stacks whereas recruitment of mTOR to lysosomes was unaffected. We show that the Golgi ribbon is a site for localization and activation of mTOR, a process dependent on the ribbon structure. We demonstrate a strict temporal sequence of fragmentation of Golgi ribbon, loss of Golgi mTOR and subsequent increased autophagy. Golgi ribbon fragmentation has been reported in various neurodegenerative diseases and we demonstrate the potential relevance of our findings in neuronal cells using a model of neurodegeneration. Overall, this study highlights a role for the Golgi ribbon in pathways central to cellular homeostasis.This article has an associated First Person interview with the first author of the paper.
在脊椎动物中,各个高尔基体堆叠被连接成一个紧凑的带状结构;然而,带状结构的相关性一直难以捉摸。在这里,我们利用发现 - 高尔基网络的膜系绳 GCC88(由 编码)调节高尔基体小堆栈和高尔基带之间的平衡。在稳定细胞中过度表达 GCC88 会导致高尔基带丢失,从而导致机械靶标雷帕霉素 (mTOR) 信号受损,并导致 LC3-II 阳性自噬体急剧增加,而 RNAi 介导的 GCC88 消耗则恢复了高尔基带并减少了自噬。mTOR 不存在于分散的高尔基体小堆栈中,而 mTOR 向溶酶体的募集不受影响。我们表明,高尔基带是 mTOR 定位和激活的部位,这是一个依赖于带结构的过程。我们证明了高尔基带碎裂、高尔基 mTOR 丧失以及随后自噬增加的严格时间顺序。高尔基带碎裂已在各种神经退行性疾病中报道,我们使用神经退行性变模型证明了我们在神经元细胞中发现的潜在相关性。总的来说,这项研究强调了高尔基带在细胞内稳态的中心途径中的作用。本文有一篇与论文第一作者的第一人称访谈。