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植物 secretome:揭示分泌蛋白的秘密。

Plant secretome: unlocking secrets of the secreted proteins.

机构信息

Research Laboratory for Biotechnology and Biochemistry, Kathmandu, Nepal.

出版信息

Proteomics. 2010 Feb;10(4):799-827. doi: 10.1002/pmic.200900514.

Abstract

Plant secretomics is a newly emerging area of the plant proteomics field. It basically describes the global study of secreted proteins into the extracellular space of plant cell or tissue at any given time and under certain conditions through various secretory mechanisms. A combination of biochemical, proteomics and bioinformatics approaches has been developed to isolate, identify and profile secreted proteins using complementary in vitro suspension-cultured cells and in planta systems. Developed inventories of secreted proteins under normal, biotic and abiotic conditions revealed several different types of novel secreted proteins, including the leaderless secretory proteins (LSPs). On average, LSPs can account for more than 50% of the total identified secretome, supporting, as in other eukaryotes, the existence of novel secretory mechanisms independent of the classical endoplasmic reticulum-Golgi secretory pathway, and suggesting that this non-classical mechanism of protein expression is, for as yet unknown reasons, more massively used than in other eukaryotic systems. Plants LSPs, which seem to be potentially involved in the defense/stress responses, might have dual (extracellular and/or intracellular) roles as most of them have established intracellular functions, yet presently unknown extracellular functions. Evidence is emerging on the role of glycosylation in the apical sorting and trafficking of secretory proteins. These initial secretome studies in plants have considerably advanced our understanding on secretion of different types of proteins and their underlying mechanisms, and opened a door for comparative analyses of plant secretomes with those of other organisms. In this first review on plant secretomics, we summarize and discuss the secretome definition, the applied approaches for unlocking secrets of the secreted proteins in the extracellular fluid, the possible functional significance and secretory mechanisms of LSPs, as well as glycosylation of secreted proteins and challenges involved ahead. Further improvements in existing and developing strategies and techniques will continue to drive forward plant secretomics research to building comprehensive and confident data sets of secreted proteins. This will lead to an increased understanding on how cells couple the concerted action of secreted protein networks to their internal and external environments.

摘要

植物分泌组学是植物蛋白质组学领域的一个新兴领域。它基本上描述了通过各种分泌机制,在任何给定时间和特定条件下,将分泌蛋白整体研究到植物细胞或组织的细胞外空间中。已经开发了生化、蛋白质组学和生物信息学方法的组合,以使用互补的体外悬浮培养细胞和体内系统分离、鉴定和分析分泌蛋白。在正常、生物和非生物条件下开发的分泌蛋白目录揭示了几种不同类型的新型分泌蛋白,包括无信号肽的分泌蛋白(LSPs)。平均而言,LSPs 可以占总鉴定分泌组的 50%以上,这支持了与其他真核生物一样,存在独立于经典内质网-高尔基体分泌途径的新型分泌机制,并表明这种非经典的蛋白质表达机制,由于未知原因,比其他真核系统更广泛地使用。植物 LSPs 似乎可能参与防御/应激反应,它们可能具有双重(细胞外和/或细胞内)作用,因为它们中的大多数都具有已建立的细胞内功能,但目前尚不清楚其细胞外功能。糖基化在分泌蛋白顶端分拣和运输中的作用的证据正在出现。这些在植物中进行的最初的分泌组学研究极大地提高了我们对不同类型蛋白质分泌及其潜在机制的理解,并为比较植物分泌组与其他生物体的分泌组开辟了道路。在这篇关于植物分泌组学的第一篇综述中,我们总结和讨论了分泌组的定义、用于揭示细胞外液中分泌蛋白秘密的应用方法、LSPs 的可能功能意义和分泌机制,以及分泌蛋白的糖基化和未来的挑战。现有和正在开发的策略和技术的进一步改进将继续推动植物分泌组学研究,以构建全面和可靠的分泌蛋白数据集。这将导致对细胞如何将分泌蛋白网络的协同作用与其内部和外部环境联系起来有更深入的了解。

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