首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Vesicular trafficking through cortical actin during exocytosis is regulated by the Rab27a effector JFC1/Slp1 and the RhoA-GTPase–activating protein Gem-interacting protein
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A Highlights from MBoC Selection: Vesicular trafficking through cortical actin during exocytosis is regulated by the Rab27a effector JFC1/Slp1 and the RhoA-GTPase–activating protein Gem-interacting protein

机译:MBoC选择的亮点:在胞吐过程中通过皮质肌动蛋白的水泡运输受Rab27a效应子JFC1 / Slp1和RhoA-GTPase激活蛋白Gem-interacting蛋白的调控。

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Cytoskeleton remodeling is important for the regulation of vesicular transport associated with exocytosis, but a direct association between granular secretory proteins and actin-remodeling molecules has not been shown, and this mechanism remains obscure. Using a proteomic approach, we identified the RhoA-GTPase–activating protein Gem-interacting protein (GMIP) as a factor that associates with the Rab27a effector JFC1 and modulates vesicular transport and exocytosis. GMIP down-regulation induced RhoA activation and actin polymerization. Importantly, GMIP-down-regulated cells showed impaired vesicular transport and exocytosis, while inhibition of the RhoA-signaling pathway induced actin depolymerization and facilitated exocytosis. We show that RhoA activity polarizes around JFC1-containing secretory granules, suggesting that it may control directionality of granule movement. Using quantitative live-cell microscopy, we show that JFC1-containing secretory organelles move in areas near the plasma membrane deprived of polymerized actin and that dynamic vesicles maintain an actin-free environment in their surroundings. Supporting a role for JFC1 in RhoA inactivation and actin remodeling during exocytosis, JFC1 knockout neutrophils showed increased RhoA activity, and azurophilic granules were unable to traverse cortical actin in cells lacking JFC1. We propose that during exocytosis, actin depolymerization commences near the secretory organelle, not the plasma membrane, and that secretory granules use a JFC1- and GMIP-dependent molecular mechanism to traverse cortical actin.
机译:细胞骨架重塑对于调节与胞吐作用有关的囊泡运输很重要,但尚未显示颗粒分泌蛋白与肌动蛋白重塑分子之间的直接联系,并且这种机制仍然不清楚。使用蛋白质组学方法,我们确定了RhoA-GTPase活化蛋白与Gem相互作用的蛋白(GMIP)是与Rab27a效应子JFC1相关并调节囊泡运输和胞吐作用的因子。 GMIP下调诱导RhoA激活和肌动蛋白聚合。重要的是,下调GMIP的细胞显示出受损的囊泡运输和胞吐作用,而抑制RhoA信号通路则诱导肌动蛋白解聚并促进胞吐作用。我们显示,RhoA活性极化包含JFC1的分泌颗粒周围,这表明它可能控制颗粒运动的方向。使用定量活细胞显微镜检查,我们发现含JFC1的分泌细胞器在质膜附近缺乏聚合肌动蛋白的区域移动,动态囊泡在其周围维持无肌动蛋白的环境。 JFC1敲除中性粒细胞显示RhoA活性增加,并且支持嗜酸性颗粒无法穿越缺乏JFC1的细胞中的皮质肌动蛋白,从而支持JFC1在胞吐作用期间RhoA失活和肌动蛋白重塑中的作用。我们建议在胞吐过程中,肌动蛋白的解聚反应开始于分泌细胞器附近,而不是质膜附近,并且分泌颗粒使用JFC1和GMIP依赖性分子机制来穿越皮质肌动蛋白。

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