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Tetraspanins in Extracellular Vesicle Formation and Function

机译:四跨膜蛋白在细胞外囊泡的形成和功能

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摘要

Extracellular vesicles (EVs) represent a novel mechanism of intercellular communication as vehicles for intercellular transfer of functional membrane and cytosolic proteins, lipids, and RNAs. Microvesicles, ectosomes, shedding vesicles, microparticles, and exosomes are the most common terms to refer to the different kinds of EVs based on their origin, composition, size, and density. Exosomes have an endosomal origin and are released by many different cell types, participating in different physiological and/or pathological processes. Depending on their origin, they can alter the fate of recipient cells according to the information transferred. In the last two decades, EVs have become the focus of many studies because of their putative use as non-invasive biomarkers and their potential in bioengineering and clinical applications. In order to exploit this ability of EVs many aspects of their biology should be deciphered. Here, we review the mechanisms involved in EV biogenesis, assembly, recruitment of selected proteins, and genetic material as well as the uptake mechanisms by target cells in an effort to understand EV functions and their utility in clinical applications. In these contexts, the role of proteins from the tetraspanin superfamily, which are among the most abundant membrane proteins of EVs, will be highlighted.
机译:细胞外囊泡(EVs)代表了一种新型的细胞间通讯机制,作为功能性细胞膜和胞质蛋白,脂质和RNA的细胞间转移的载体。微囊泡,囊泡,脱落的囊泡,微粒和外泌体是最常见的术语,指的是基于其来源,组成,大小和密度的不同类型的电动汽车。外泌体具有内体起源,并由许多不同的细胞类型释放,参与不同的生理和/或病理过程。根据它们的起源,它们可以根据传递的信息改变受体细胞的命运。在过去的二十年中,电动汽车已成为许多研究的重点,因为它们被推定为非侵入性生物标志物,并且在生物工程和临床应用中具有潜力。为了充分利用电动汽车的这种能力,应该从生物学的许多方面着手。在这里,我们综述了与电动生物的发生,组装,所选蛋白质和遗传物质的募集有关的机制,以及靶细胞的摄取机制,旨在了解电动汽车的功能及其在临床应用中的效用。在这些背景下,来自四跨膜蛋白超家族的蛋白质的作用将被强调,它们是电动汽车中最丰富的膜蛋白之一。

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