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高尔基体动力学:健康与疾病状态下哺乳动物高尔基体的形态学

Golgi Dynamics: The Morphology of the Mammalian Golgi Apparatus in Health and Disease.

作者信息

Makhoul Christian, Gosavi Prajakta, Gleeson Paul A

机构信息

The Department of Biochemistry and Molecular Biology, Bio21 Molecular Science and Biotechnology Institute, The University of Melbourne, Melbourne, VIC, Australia.

出版信息

Front Cell Dev Biol. 2019 Jul 3;7:112. doi: 10.3389/fcell.2019.00112. eCollection 2019.

Abstract

In vertebrate cells the Golgi consists of individual stacks fused together into a compact ribbon structure. The function of the ribbon structure of the Golgi has only begun to be appreciated (De Matteis et al., 2008; Gosavi and Gleeson, 2017; Wei and Seemann, 2017). Recent advances have identified a role for the Golgi in the regulation of a broad range of cellular processes and of particular interest is that the modulation of the Golgi ribbon is associated with regulation of a number of signaling pathways (Makhoul et al., 2018). Various cell responses, such as inflammation, and various disorders and diseases, including neurodegeneration and cancer, are associated with the loss of the Golgi ribbon and the appearance of a dispersed or semi-dispersed Golgi. Often the dispersed Golgi is referred to as a "fragmented" morphology. However, the description of a dispersed Golgi ribbon as "fragmented" is inadequate as it does not accurately define the morphological state of the Golgi. This issue is particularly relevant as there are an increasing number of reports describing Golgi fragmentation under physiological and pathological conditions. Knowledge of the precise Golgi architecture is relevant to an appreciation of the functional status of the Golgi apparatus and the underlying molecular mechanism for the contribution of the Golgi to different cellular processes. Here we propose a classification to define the various morphological states of the non-ribbon architecture of the Golgi in mammalian cells as a guide to more precisely define the relationship between the morphological and functional status of this organelle.

摘要

在脊椎动物细胞中,高尔基体由单个堆叠融合在一起形成紧密的带状结构。高尔基体带状结构的功能才刚刚开始被认识(德马泰斯等人,2008年;戈萨维和格利森,2017年;魏和西曼,2017年)。最近的进展已经确定高尔基体在广泛的细胞过程调控中发挥作用,特别值得关注的是,高尔基体带状结构的调节与多种信号通路的调节相关(马赫胡尔等人,2018年)。各种细胞反应,如炎症,以及各种疾病和病症,包括神经退行性变和癌症,都与高尔基体带状结构的丧失以及分散或半分散高尔基体的出现有关。通常,分散的高尔基体被称为“碎片化”形态。然而,将分散的高尔基体带状结构描述为“碎片化”是不恰当的,因为它没有准确界定高尔基体的形态状态。随着越来越多关于生理和病理条件下高尔基体碎片化的报道,这个问题尤为重要。了解精确的高尔基体结构对于理解高尔基体的功能状态以及高尔基体对不同细胞过程贡献的潜在分子机制至关重要。在这里,我们提出一种分类方法,以定义哺乳动物细胞中高尔基体非带状结构的各种形态状态,作为更精确界定该细胞器形态与功能状态之间关系的指南。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d42/6616279/553cf326c26d/fcell-07-00112-g001.jpg

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