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基于荧光成像的筛选鉴定出早期内体运输的ARF鸟苷酸交换因子成分。

Fluorescence imaging-based screen identifies ARF GEF component of early endosomal trafficking.

作者信息

Tanaka Hirokazu, Kitakura Saeko, De Rycke Riet, De Groodt Ruth, Friml Jirí

机构信息

Department of Plant Systems Biology, Flanders Institute for Biotechnology (VIB) and Department of Molecular Genetics, Ghent University, 9052 Gent, Belgium.

出版信息

Curr Biol. 2009 Mar 10;19(5):391-7. doi: 10.1016/j.cub.2009.01.057. Epub 2009 Feb 19.

Abstract

Endocytic vesicle trafficking is crucial for regulating activity and localization of plasma membrane components, but the process is still poorly genetically defined in plants. Membrane proteins of the PIN-FORMED (PIN) family exhibit polar localization in plant cells and facilitate cellular efflux of the plant hormone auxin, thereby regulating multiple developmental processes. PIN proteins undergo constitutive endocytosis and GNOM ARF GEF-dependent recycling, and their localization is under extensive regulation by developmental and environmental cues. We designed a fluorescence imaging-based screen to identify Arabidopsis thaliana mutants defective in internalization of proteins including PINs from the plasma membrane. We identified three mutant loci, BFA-visualized endocytic trafficking defective1 (ben1) through ben3 that do not efficiently accumulate PIN1-GFP in intracellular compartments after inhibition of recycling and secretion by fungal toxin brefeldin A (BFA). Fine mapping revealed that BEN1 encodes an ARF GEF vesicle trafficking regulator from the functionally uncharacterized BIG class. ben1 mutant has been previously implicated in pathogen response and shows cell polarity, BFA sensitivity, and growth defects. BEN1 is involved in endocytosis of plasma membrane proteins and localizes to early endocytic compartments distinct from GNOM-positive endosomes. Our results identify BEN1 as the ARF GEF mediating early endosomal traffic.

摘要

内吞囊泡运输对于调节质膜成分的活性和定位至关重要,但该过程在植物中的遗传定义仍不明确。PIN 形成(PIN)家族的膜蛋白在植物细胞中表现出极性定位,并促进植物激素生长素的细胞外排,从而调节多个发育过程。PIN 蛋白经历组成型内吞作用和 GNOM ARF GEF 依赖性循环,其定位受到发育和环境线索的广泛调节。我们设计了一种基于荧光成像的筛选方法,以鉴定拟南芥中质膜蛋白(包括 PINs)内化缺陷的突变体。我们鉴定了三个突变位点,即 BFA 可视化内吞运输缺陷 1(ben1)至 ben3,在真菌毒素布雷菲德菌素 A(BFA)抑制循环和分泌后,它们不能有效地在细胞内区室中积累 PIN1-GFP。精细定位表明,BEN1 编码一种来自功能未明确的 BIG 类的 ARF GEF 囊泡运输调节因子。ben1 突变体先前已被证明与病原体反应有关,并表现出细胞极性、BFA 敏感性和生长缺陷。BEN1 参与质膜蛋白的内吞作用,并定位于与 GNOM 阳性内体不同的早期内吞区室。我们的结果确定 BEN1 为介导早期内体运输的 ARF GEF。

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