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花粉管中质膜大囊泡运输的定量结构组织。

Quantitative Structural Organization of Bulk Apical Membrane Traffic in Pollen Tubes.

机构信息

Cell Biology, Department of Biology, Friedrich-Alexander-University Erlangen Nuremberg, 91058 Erlangen, Germany.

PULS Group, Department of Physics, Friedrich-Alexander-University Erlangen Nuremberg, 91058 Erlangen, Germany.

出版信息

Plant Physiol. 2020 Aug;183(4):1559-1585. doi: 10.1104/pp.20.00380. Epub 2020 Jun 1.

Abstract

Pollen tube tip growth depends on balancing secretion of cell wall material with endocytic recycling of excess material incorporated into the plasma membrane (PM). The classical model of tip growth, which predicts bulk secretion, occurs apically, and is compensated by subapical endocytosis, has been challenged in recent years. Many signaling proteins and lipids with important functions in the regulation of membrane traffic underlying tip growth associate with distinct regions of the pollen tube PM, and understanding the mechanisms responsible for the targeting of these regulatory factors to specific PM domains requires quantitative information concerning the sites of bulk secretion and endocytosis. Here, we quantitatively characterized the spatial organization of membrane traffic during tip growth by analyzing steady-state distributions and dynamics of FM4-64-labeled lipids and YFP-tagged transmembrane (TM) proteins in tobacco () pollen tubes growing normally or treated with Brefeldin A to block secretion. We established that (1) secretion delivers TM proteins and recycled membrane lipids to the same apical PM domain, and (2) FM4-64-labeled lipids, but not the analyzed TM proteins, undergo endocytic recycling within a clearly defined subapical region. We mathematically modeled the steady-state PM distributions of all analyzed markers to better understand differences between them and to support the experimental data. Finally, we mapped subapical F-actin fringe and trans-Golgi network positioning relative to sites of bulk secretion and endocytosis to further characterize functions of these structures in apical membrane traffic. Our results support and further define the classical model of apical membrane traffic at the tip of elongating pollen tubes.

摘要

花粉管尖端生长取决于平衡细胞壁物质的分泌与过量物质纳入质膜(PM)的内吞再循环。近年来,经典的尖端生长模型(预测大量分泌发生在顶端,并通过亚顶端内吞作用得到补偿)受到了挑战。许多在调节花粉管尖端生长的膜运输中具有重要功能的信号蛋白和脂质与花粉管 PM 的不同区域相关联,而理解将这些调节因子靶向特定 PM 域的机制需要有关大量分泌和内吞作用的位置的定量信息。在这里,我们通过分析烟草()花粉管正常生长或用布雷菲德菌素 A 处理以阻断分泌时用 FM4-64 标记的脂质和 YFP 标记的跨膜(TM)蛋白的稳态分布和动力学,定量表征了尖端生长过程中的膜运输的空间组织。我们确定了(1)分泌将 TM 蛋白和回收的膜脂质输送到相同的顶端 PM 域,以及(2)FM4-64 标记的脂质,但不是分析的 TM 蛋白,在一个明确界定的亚顶端区域内经历内吞再循环。我们对所有分析标记物的稳态 PM 分布进行了数学建模,以更好地理解它们之间的差异,并支持实验数据。最后,我们将亚顶端 F-肌动蛋白边缘和反式高尔基体网络的定位与大量分泌和内吞作用的位置进行了映射,以进一步表征这些结构在顶端膜运输中的功能。我们的结果支持并进一步定义了伸长花粉管尖端的经典顶端膜运输模型。

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