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探索脂质在细胞间通道中的作用:即将取得的突破。

Exploring the role of lipids in intercellular conduits: breakthroughs in the pipeline.

作者信息

Delage Elise, Zurzolo Chiara

机构信息

Unité de Trafic Membranaire et Pathogenèse, Département de Biologie Cellulaire et Infection, Institut Pasteur Paris, France.

出版信息

Front Plant Sci. 2013 Dec 10;4:504. doi: 10.3389/fpls.2013.00504.

Abstract

It has been known for more than a century that most of the plant cells are connected to their neighbors through membranous pores perforating the cell wall, namely plasmodesmata (PDs). The recent discovery of tunneling nanotubes (TNTs), thin membrane bridges established between distant mammalian cells, suggests that intercellular communication mediated through cytoplasmic continuity could be a conserved feature of eukaryotic organisms. Although TNTs differ from PDs in their formation and architecture, both are characterized by a continuity of the plasma membrane between two cells, delimiting a nanotubular channel supported by actin-based cytoskeleton. Due to this unusual membrane organization, lipids are likely to play critical roles in the formation and stability of intercellular conduits like TNTs and PDs, but also in regulating the transfer through these structures. While it is crucial for a better understanding of those fascinating communication highways, the study of TNT lipid composition and dynamics turned out to be extremely challenging. The present review aims to give an overview of the recent findings in this context. We will also discuss some of the promising imaging approaches, which might be the key for future breakthroughs in the field and could also benefit the research on PDs.

摘要

一个多世纪以来,人们已经知道大多数植物细胞通过贯穿细胞壁的膜孔与其相邻细胞相连,即胞间连丝(PDs)。最近发现的隧道纳米管(TNTs),即在远距离哺乳动物细胞之间建立的薄膜桥,表明通过细胞质连续性介导的细胞间通讯可能是真核生物的一个保守特征。尽管TNTs在形成和结构上与PDs不同,但两者的特征都是两个细胞之间质膜的连续性,界定了一个由基于肌动蛋白的细胞骨架支撑的纳米管通道。由于这种不寻常的膜组织,脂质可能在TNTs和PDs等细胞间管道的形成和稳定性中发挥关键作用,也在调节通过这些结构的转运中发挥关键作用。虽然这对于更好地理解这些迷人的通讯通道至关重要,但TNT脂质组成和动力学的研究结果却极具挑战性。本综述旨在概述这方面的最新发现。我们还将讨论一些有前景的成像方法,这些方法可能是该领域未来突破的关键,也可能有益于对PDs的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb8f/3857720/d008e3c29886/fpls-04-00504-g001.jpg

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