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植物中高尔基体后出芽运输的时空控制。

Spatio-temporal control of post-Golgi exocytic trafficking in plants.

机构信息

Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.

Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK

出版信息

J Cell Sci. 2020 Feb 26;133(4):jcs237065. doi: 10.1242/jcs.237065.

Abstract

A complex and dynamic endomembrane system is a hallmark of eukaryotic cells and underpins the evolution of specialised cell types in multicellular organisms. Endomembrane system function critically depends on the ability of the cell to (1) define compartment and pathway identity, and (2) organise compartments and pathways dynamically in space and time. Eukaryotes possess a complex molecular machinery to control these processes, including small GTPases and their regulators, SNAREs, tethering factors, motor proteins, and cytoskeletal elements. Whereas many of the core components of the eukaryotic endomembrane system are broadly conserved, there have been substantial diversifications within different lineages, possibly reflecting lineage-specific requirements of endomembrane trafficking. This Review focusses on the spatio-temporal regulation of post-Golgi exocytic transport in plants. It highlights recent advances in our understanding of the elaborate network of pathways transporting different cargoes to different domains of the cell surface, and the molecular machinery underpinning them (with a focus on Rab GTPases, their interactors and the cytoskeleton). We primarily focus on transport in the context of growth, but also highlight how these pathways are co-opted during plant immunity responses and at the plant-pathogen interface.

摘要

一个复杂而动态的内膜系统是真核细胞的标志,也是多细胞生物中特化细胞类型进化的基础。内膜系统的功能取决于细胞的以下两种能力:(1) 定义区室和途径的身份,以及 (2) 动态地在空间和时间上组织区室和途径。真核生物拥有控制这些过程的复杂分子机制,包括小分子 GTP 酶及其调节剂、SNARE 蛋白、连接因子、马达蛋白和细胞骨架元件。尽管真核生物内膜系统的许多核心成分广泛保守,但在不同谱系中发生了大量的多样化,这可能反映了内膜运输的谱系特异性需求。这篇综述聚焦于植物中高尔基体后出芽运输的时空调控。它强调了我们对将不同货物运输到细胞表面不同区域的复杂途径网络以及支撑这些途径的分子机制(重点是 Rab GTP 酶、它们的相互作用蛋白和细胞骨架)的理解的最新进展。我们主要关注生长过程中的运输,但也强调了这些途径如何在植物免疫反应中和在植物-病原体界面中被共同利用。

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