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选择性自噬:斑马鱼模型的崛起。

Selective autophagy: the rise of the zebrafish model.

机构信息

Department of Biology, Georgia State University, Atlanta, GA, USA.

出版信息

Autophagy. 2021 Nov;17(11):3297-3305. doi: 10.1080/15548627.2020.1853382. Epub 2020 Dec 15.

Abstract

Selective autophagy is a specific elimination of certain intracellular substrates by autophagic pathways. The most studied macroautophagy pathway involves tagging and recognition of a specific cargo by the autophagic membrane (phagophore) followed by the complete sequestration of targeted cargo from the cytosol by the double-membrane vesicle, autophagosome. Until recently, the knowledge about selective macroautophagy was minimal, but now there is a panoply of links elucidating how phagophores engulf their substrates selectively. The studies of selective autophagy processes have further stressed the importance of using the models to validate new findings and discover the physiologically relevant mechanisms. However, dissecting how the selective autophagy occurs yet remains difficult in living organisms, because most of the organelles are relatively inaccessible to observation and experimental manipulation in mammals. In recent years, zebrafish () is widely recognized as an excellent model for studying autophagic processes because of its optical accessibility, genetic manipulability and translational potential. Several selective autophagy pathways, such as mitophagy, xenophagy, lipophagy and aggrephagy, have been investigated using zebrafish and still need to be studied further, while other selective autophagy pathways, such as pexophagy or reticulophagy, could also benefit from the use of the zebrafish model. In this review, we shed light on how zebrafish contributed to our understanding of these selective autophagy processes by providing the platform to study them at the organismal level and highlighted the versatility of zebrafish model in the selective autophagy field. AD: Alzheimer disease; ALS: amyotrophic lateral sclerosis; Atg: autophagy-related; CMA: chaperone-mediated autophagy; CQ: chloroquine; HsAMBRA1: human AMBRA1; KD: knockdown; KO: knockout; LD: lipid droplet; MMA: methylmalonic acidemia; PD: Parkinson disease; Tg: transgenic.

摘要

选择性自噬是通过自噬途径特异性清除某些细胞内底物的过程。研究最深入的巨自噬途径涉及自噬膜(吞噬体)对特定货物的标记和识别,随后靶向货物从细胞质被双层膜囊泡即自噬体完全隔离。直到最近,人们对选择性巨自噬的了解还很少,但现在有大量的研究揭示了吞噬体如何选择性地吞噬它们的底物。选择性自噬过程的研究进一步强调了使用模型来验证新发现和发现生理相关机制的重要性。然而,在活生物体中,解析选择性自噬的发生仍然很困难,因为在哺乳动物中,大多数细胞器相对难以观察和实验操作。近年来,斑马鱼()因其光学可及性、遗传可操作性和转化潜力而被广泛认为是研究自噬过程的优秀模型。已经使用斑马鱼研究了几种选择性自噬途径,如线粒体自噬、异噬、脂自噬和聚集体自噬,仍需要进一步研究,而其他选择性自噬途径,如pexophagy 或reticulophagy,也可以受益于使用斑马鱼模型。在这篇综述中,我们通过提供在机体水平上研究这些选择性自噬过程的平台,阐明了斑马鱼如何有助于我们对这些选择性自噬过程的理解,并强调了斑马鱼模型在选择性自噬领域的多功能性。AD:阿尔茨海默病;ALS:肌萎缩侧索硬化症;Atg:自噬相关;CMA:伴侣介导的自噬;CQ:氯喹;HsAMBRA1:人 AMBRA1;KD:敲低;KO:敲除;LD:脂滴;MMA:甲基丙二酸血症;PD:帕金森病;Tg:转基因。

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