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The art of cellular communication: tunneling nanotubes bridge the divide

机译:细胞通信的艺术:隧穿纳米管弥合鸿沟

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摘要

The ability of cells to receive, process, and respond to information is essential for a variety of biological processes. This is true for the simplest single cell entity as it is for the highly specialized cells of multicellular organisms. In the latter, most cells do not exist as independent units, but are organized into specialized tissues. Within these functional assemblies, cells communicate with each other in different ways to coordinate physiological processes. Recently, a new type of cell-to-cell communication was discovered, based on de novo formation of membranous nanotubes between cells. These F-actin-rich structures, referred to as tunneling nanotubes (TNT), were shown to mediate membrane continuity between connected cells and facilitate the intercellular transport of various cellular components. The subsequent identification of TNT-like structures in numerous cell types revealed some structural diversity. At the same time it emerged that the direct transfer of cargo between cells is a common functional property, suggesting a general role of TNT-like structures in selective, long-range cell-to-cell communication. Due to the growing number of documented thin and long cell protrusions in tissue implicated in cell-to-cell signaling, it is intriguing to speculate that TNT-like structures also exist in vivo and participate in important physiological processes.
机译:细胞接收,处理和响应信息的能力对于多种生物学过程至关重要。对于最简单的单细胞实体,对于多细胞生物的高度专业化的细胞,都是如此。在后者中,大多数细胞不作为独立单元存在,而是组织成专门的组织。在这些功能组件中,细胞以不同的方式彼此通信以协调生理过程。最近,一种基于细胞之间膜状纳米管从头形成的新型细胞间通信被发现。这些富含F-肌动蛋白的结构被称为隧穿纳米管(TNT),可介导连接细胞之间的膜连续性,并促进各种细胞组分的细胞间运输。随后鉴定出的多种细胞类型中的TNT样结构揭示了一些结构多样性。同时,人们发现,货物在细胞之间的直接转移是一种共同的功能特性,这表明TNT样结构在选择性的,长距离的细胞间通信中具有普遍的作用。由于与细胞间信号传导有关的组织中薄细胞和长细胞突起的数量不断增加,令人好奇地推测TNT样结构也存在于体内并参与重要的生理过程。

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