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高尔基在黏多糖贮积症 II 型细胞病理学的剧本中需要一个新的角色。

Golgi requires a new casting in the screenplay of mucopolysaccharidosis II cytopathology.

机构信息

Department of Anatomy, Cell and Developmental Biology, ELTE, Eötvös Loránd University, Pázmány Péter stny. 1/C, Budapest, 1117, Hungary.

Department of Aquaculture, Institute of Aquaculture and Environmental Safety, Hungarian University of Agriculture and Life Sciences, Gödöllő, 2100, Hungary.

出版信息

Biol Futur. 2022 Mar;73(1):31-42. doi: 10.1007/s42977-021-00107-y. Epub 2021 Nov 27.

Abstract

Lysosome (L), a hydrolytic compartment of the endo-lysosomal system (ELS), plays a central role in the metabolic regulation of eukaryotic cells. Furthermore, it has a central role in the cytopathology of several diseases, primarily in lysosomal storage diseases (LSDs). Mucopolysaccharidosis II (MPS II, Hunter disease) is a rare LSD caused by idunorate-2-sulphatase (IDS) enzyme deficiency. To provide a new platform for drug development and clarifying the background of the clinically observed cytopathology, we established a human in vitro model, which recapitulates all cellular hallmarks of the disease. Some of our results query the traditional concept by which the storage vacuoles originate from the endosomal system and suggest a new concept, in which endoplasmic reticulum-Golgi intermediate compartment (ERGIC) and RAB2/LAMP positive Golgi (G) vesicles play an initiative role in the vesicle formation. In this hypothesis, Golgi is not only an indirectly affected organelle but enforced to be the main support of vacuole formation. The purposes of this minireview are to give a simple guide for understanding the main relationships in ELS, to present the storage vacuoles and their relation to ELS compartments, to recommend an alternative model for vacuole formation, and to place the Golgi in spotlight of MPS II cytopathology.

摘要

溶酶体 (L) 是内溶酶体系统 (ELS) 的水解隔室,在真核细胞的代谢调节中发挥核心作用。此外,它在几种疾病的细胞病理学中也起着核心作用,主要是在溶酶体贮积病 (LSD) 中。黏多糖贮积症 II 型 (MPS II,亨特病) 是一种罕见的 LSD,由 idunorate-2-硫酸酯酶 (IDS) 酶缺乏引起。为了提供药物开发的新平台并阐明临床观察到的细胞病理学背景,我们建立了一种人类体外模型,该模型重现了该疾病的所有细胞特征。我们的一些结果质疑了传统概念,即储存液泡起源于内体系统,并提出了一个新概念,即内质网-高尔基体中间隔室 (ERGIC) 和 RAB2/LAMP 阳性高尔基体 (G) 小泡在小泡形成中发挥主动作用。在这个假说中,高尔基体不仅是一个间接受影响的细胞器,而且被迫成为液泡形成的主要支撑。本篇综述的目的是为理解 ELS 的主要关系提供一个简单的指南,介绍储存液泡及其与 ELS 隔室的关系,推荐一种替代的液泡形成模型,并将高尔基体置于 MPS II 细胞病理学的焦点。

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