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星形胶质细胞中间丝的多样性。

The Diversity of Intermediate Filaments in Astrocytes.

机构信息

Laboratory of Neuroendocrinology - Molecular Cell Physiology, Institute of Pathophysiology, Faculty of Medicine, University of Ljubljana, 1000 Ljubljana, Slovenia.

Celica BIOMEDICAL, 1000 Ljubljana, Slovenia.

出版信息

Cells. 2020 Jul 2;9(7):1604. doi: 10.3390/cells9071604.

Abstract

Despite the remarkable complexity of the individual neuron and of neuronal circuits, it has been clear for quite a while that, in order to understand the functioning of the brain, the contribution of other cell types in the brain have to be accounted for. Among glial cells, astrocytes have multiple roles in orchestrating neuronal functions. Their communication with neurons by exchanging signaling molecules and removing molecules from extracellular space takes place at several levels and is governed by different cellular processes, supported by multiple cellular structures, including the cytoskeleton. Intermediate filaments in astrocytes are emerging as important integrators of cellular processes. Astrocytes express five types of intermediate filaments: glial fibrillary acidic protein (GFAP); vimentin; nestin; synemin; lamins. Variability, interactions with different cellular structures and the particular roles of individual intermediate filaments in astrocytes have been studied extensively in the case of GFAP and vimentin, but far less attention has been given to nestin, synemin and lamins. Similarly, the interplay between different types of cytoskeleton and the interaction between the cytoskeleton and membranous structures, which is mediated by cytolinker proteins, are understudied in astrocytes. The present review summarizes the basic properties of astrocytic intermediate filaments and of other cytoskeletal macromolecules, such as cytolinker proteins, and describes the current knowledge of their roles in normal physiological and pathological conditions.

摘要

尽管单个神经元和神经元回路的结构极其复杂,但已经很清楚,为了理解大脑的功能,必须考虑到大脑中其他细胞类型的贡献。在神经胶质细胞中,星形胶质细胞在协调神经元功能方面具有多种作用。它们通过交换信号分子和从细胞外空间去除分子与神经元进行通讯,这种通讯发生在多个水平,并受到不同的细胞过程的调节,由多种细胞结构支持,包括细胞骨架。星形胶质细胞中的中间丝作为细胞过程的重要整合者正在出现。星形胶质细胞表达五种中间丝:神经胶质酸性蛋白 (GFAP);波形蛋白;巢蛋白;突触蛋白;核纤层蛋白。在 GFAP 和波形蛋白的情况下,已经广泛研究了中间丝的变异性、与不同细胞结构的相互作用以及单个中间丝在星形胶质细胞中的特定作用,但对巢蛋白、突触蛋白和核纤层蛋白的关注要少得多。同样,细胞骨架之间的相互作用以及细胞骨架与膜状结构之间的相互作用,这些作用是由细胞连接蛋白介导的,在星形胶质细胞中研究得还不够。本综述总结了星形胶质细胞中间丝和其他细胞骨架大分子(如细胞连接蛋白)的基本特性,并描述了它们在正常生理和病理条件下的作用的现有知识。

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