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The Inhibitor Endosidin 4 Targets SEC7 Domain-Type ARF GTPase Exchange Factors and Interferes with Subcellular Trafficking in Eukaryotes

机译:抑制剂肠苷4靶向SEC7结构型ARF GTP酶交换因子,并干扰了真核生物的亚细胞贩运

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摘要

The trafficking of subcellular cargos in eukaryotic cells crucially depends on vesicle budding, a process mediated by ARFGEFs (ADP-ribosylation factor guanine nucleotide exchange factors). In plants, ARF-GEFs play essential roles in endocytosis, vacuolar trafficking, recycling, secretion, and polar trafficking. Moreover, they are important for plant development, mainly through controlling the polar subcellular localization of PIN-FORMED transporters of the plant hormone auxin. Here, using a chemical genetics screen in Arabidopsis thaliana, we identified Endosidin 4 (ES4), an inhibitor of eukaryotic ARF-GEFs. ES4 acts similarly to and synergistically with the established ARF-GEF inhibitor Brefeldin A and has broad effects on intracellular trafficking, including endocytosis, exocytosis, and vacuolar targeting. Additionally, Arabidopsis and yeast (Saccharomyces cerevisiae) mutants defective in ARF-GEF show altered sensitivity to ES4. ES4 interferes with the activation-based membrane association of the ARF1 GTPases, but not of their mutant variants that are activated independently of ARF-GEF activity. Biochemical approaches and docking simulations confirmed that ES4 specifically targets the SEC7 domain-containing ARF-GEFs. These observations collectively identify ES4 as a chemical tool enabling the study of ARF-GEF-mediated processes, including ARF-GEF-mediated plant development.
机译:真核细胞中亚细胞尸体的贩运至关重要,这取决于囊泡芽,由arfgefs(ADP-核糖基化因子鸟嘌呤核苷酸交换因子介导的过程)。在植物中,ARF-GEFS在内吞作用,真空贩运,回收,分泌和极性贩运中起重要作用。此外,它们对于植物开发很重要,主要是通过控制植物激素毒素的销形成传送器的极性亚细胞定位。在这里,在拟南芥中使用化学遗传学筛选,我们鉴定了肠苷4(ES4),一种真核ARF-GEFS的抑制剂。 ES4与已建立的ARF-GEF抑制剂Brefeldin A同样行动和协同作用,并对细胞内贩运,包括内吞作用,外吞作用和真空靶向具有广泛的影响。此外,ARF-GEF缺陷缺陷的拟南芥和酵母(酿酒酵母)突变体表明改变对ES4的敏感性。 ES4干扰ARF1 GTP酶的活化基膜结合,但不具有其突变体变体,其独立于ARF-GEF活性激活。生物化学方法和对接模拟证实,ES4专门针对含SEC7域的ARF-GEF。这些观察结果共同识别ES4作为化学工具,从而实现ARF-GEF介导的方法,包括ARF-GEF介导的植物发育。

著录项

  • 来源
    《The Plant Cell》 |2018年第10期|共20页
  • 作者单位

    IST Austria A-3400 Klosterneuburg Austria;

    Masaryk Univ Cent European Inst Technol Mendel Ctr Plant Genom &

    Prote CZ-62500 Brno Czech Republic;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Calif Riverside Ctr Plant Cell Biol Riverside CA 92521 USA;

    VIB UGent Ctr Med Biotechnol B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Ecole Normale Super Paris Saclay CNRS Lab Biol &

    Pharmacol Appl F-94235 Cachan France;

    Ecole Normale Super Paris Saclay CNRS Lab Biol &

    Pharmacol Appl F-94235 Cachan France;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    IST Austria A-3400 Klosterneuburg Austria;

    Swedish Univ Agr Sci Dept Forest Genet &

    Plant Physiol Umea Plant Sci Ctr S-90183 Umea Sweden;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    IST Austria A-3400 Klosterneuburg Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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