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神经细胞发育中的循环内体:一种Rab蛋白就能掌控一切?

The Recycling Endosome in Nerve Cell Development: One Rab to Rule Them All?

作者信息

Rozés-Salvador Victoria, González-Billault Christian, Conde Cecilia

机构信息

Instituto de Investigación Médica Mercedes y Martín Ferreyra INIMEC-CONICET-UNC, Córdoba, Argentina.

Instituto de Ciencias Básicas, Universidad Nacional de Villa María, Córdoba, Argentina.

出版信息

Front Cell Dev Biol. 2020 Dec 10;8:603794. doi: 10.3389/fcell.2020.603794. eCollection 2020.

DOI:10.3389/fcell.2020.603794
PMID:33425908
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7793921/
Abstract

Endocytic recycling is an intracellular process that returns internalized molecules back to the plasma membrane and plays crucial roles not only in the reuse of receptor molecules but also in the remodeling of the different components of this membrane. This process is required for a diversity of cellular events, including neuronal morphology acquisition and functional regulation, among others. The recycling endosome (RE) is a key vesicular component involved in endocytic recycling. Recycling back to the cell surface may occur with the participation of several different Rab proteins, which are master regulators of membrane/protein trafficking in nerve cells. The RE consists of a network of interconnected and functionally distinct tubular subdomains that originate from sorting endosomes and transport their cargoes along microtubule tracks, by fast or slow recycling pathways. Different populations of REs, particularly those formed by Rab11, Rab35, and Arf6, are associated with a myriad of signaling proteins. In this review, we discuss the cumulative evidence suggesting the existence of heterogeneous domains of REs, controlling different aspects of neurogenesis, with a particular focus on the commonalities and singularities of these REs and their contribution to nerve development and differentiation in several animal models.

摘要

内吞循环是一种细胞内过程,它将内化的分子返回质膜,不仅在受体分子的再利用中发挥关键作用,而且在该膜不同成分的重塑中也起着关键作用。这个过程是多种细胞事件所必需的,包括神经元形态的获得和功能调节等。回收内体(RE)是参与内吞循环的关键囊泡成分。回到细胞表面的循环可能在几种不同的Rab蛋白参与下发生,这些蛋白是神经细胞中膜/蛋白质运输的主要调节因子。回收内体由相互连接且功能不同的管状亚结构域网络组成,这些亚结构域起源于分拣内体,并通过快速或慢速循环途径沿着微管轨道运输其货物。不同群体的回收内体,特别是由Rab11、Rab35和Arf6形成的那些,与大量信号蛋白相关。在这篇综述中,我们讨论了累积证据,这些证据表明存在回收内体的异质结构域,它们控制着神经发生的不同方面,特别关注这些回收内体的共性和特性以及它们在几种动物模型中对神经发育和分化的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa5/7793921/0c575ffd900c/fcell-08-603794-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa5/7793921/0c575ffd900c/fcell-08-603794-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa5/7793921/0c575ffd900c/fcell-08-603794-g001.jpg

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