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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Visualization of the exocyst complex dynamics at the plasma membrane of Arabidopsis thaliana
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A Highlights from MBoC Selection: Visualization of the exocyst complex dynamics at the plasma membrane of Arabidopsis thaliana

机译:MBoC选择的亮点:拟南芥质膜上囊外复合物动力学的可视化

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摘要

The exocyst complex, an effector of Rho and Rab GTPases, is believed to function as an exocytotic vesicle tether at the plasma membrane before soluble N -ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complex formation. Exocyst subunits localize to secretory-active regions of the plasma membrane, exemplified by the outer domain of Arabidopsis root epidermal cells. Using variable-angle epifluorescence microscopy, we visualized the dynamics of exocyst subunits at this domain. The subunits colocalized in defined foci at the plasma membrane, distinct from endocytic sites. Exocyst foci were independent of cytoskeleton, although prolonged actin disruption led to changes in exocyst localization. Exocyst foci partially overlapped with vesicles visualized by VAMP721 v-SNARE, but the majority of the foci represent sites without vesicles, as indicated by electron microscopy and drug treatments, supporting the concept of the exocyst functioning as a dynamic particle. We observed a decrease of SEC6–green fluorescent protein foci in an exo70A1 exocyst mutant. Finally, we documented decreased VAMP721 trafficking to the plasma membrane in exo70A1 and exo84b mutants. Our data support the concept that the exocyst-complex subunits dynamically dock and undock at the plasma membrane to create sites primed for vesicle tethering.
机译:据信,胞外复合物是Rho和Rab GTPases的效应子,在可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物形成之前,在质膜上起着胞泡小泡系绳的作用。囊外亚基位于质膜的分泌活性区域,例如拟南芥根表皮细胞的外部结构域。使用可变角度落射荧光显微镜,我们可视化在这个域的囊外亚基的动力学。该亚基共定位在质膜上的特定病灶中,与内吞位点不同。囊外灶与细胞骨架无关,尽管长时间的肌动蛋白破坏会导致囊外定位的改变。囊外灶与通过VAMP721 v-SNARE可视化的囊泡部分重叠,但电子显微镜和药物治疗表明,大多数囊灶代表无囊泡的部位,支持囊外囊作为动态颗粒起作用的概念。我们观察到exo70A1外囊突变体中SEC6-绿色荧光蛋白基因座的减少。最后,我们证明了exo70A1和exo84b突变体中VAMP721向质膜的运输减少。我们的数据支持这样的概念,即囊外复合物亚基在质膜上动态停靠和脱离停靠,从而形成用于囊泡束缚的部位。

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