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首页> 外文期刊>The Plant Cell >Salt-Induced Remodeling of Spatially Restricted Clathrin-Independent Endocytic Pathways in Arabidopsis Root
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Salt-Induced Remodeling of Spatially Restricted Clathrin-Independent Endocytic Pathways in Arabidopsis Root

机译:盐诱导拟南芥根中空间受限的网格蛋白非依赖性内吞途径的重塑

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Endocytosis is a ubiquitous cellular process that is characterized well in animal cells in culture but poorly across intact, functioning tissue. Here, we analyze endocytosis throughout the Arabidopsis thaliana root using three classes of probes: a lipophilic dye, tagged transmembrane proteins, and a lipid-anchored protein. We observe a stratified distribution of endocytic processes. A clathrin-dependent endocytic pathway that internalizes transmembrane proteins functions in all cell layers, while a sterol-dependent, clathrin-independent pathway that takes up lipid and lipid-anchored proteins but not transmembrane proteins is restricted to the epidermal layer. Saline stress induces a third pathway that is clathrin-independent, nondiscriminatory in its choice of cargo, and operates across all layers of the root. Concomitantly, small acidic compartments in inner cell layers expand to form larger vacuole-like structures. Plants lacking function of the Rab-GEF (guanine nucleotide exchange factor) VPS9a (vacuolar protein sorting 9A) neither induce the third endocytic pathway nor expand the vacuolar system in response to salt stress. The plants are also hypersensitive to salt. Thus, saline stress reconfigures clathrin-independent endocytosis and remodels endomembrane systems, forming large vacuoles in the inner cell layers, both processes correlated by the requirement of VPS9a activity.
机译:内吞作用是一种普遍存在的细胞过程,在培养的动物细胞中具有良好的特征,但在完整的,正常运行的组织中却表现不佳。在这里,我们使用三类探针分析整个拟南芥根的内吞作用:亲脂性染料,标记跨膜蛋白和脂质锚定蛋白。我们观察到内吞过程的分层分布。内部化跨膜蛋白的网格蛋白依赖性内吞途径在所有细胞层中均起作用,而占据脂质和脂质锚定蛋白而非跨膜蛋白的固醇依赖性,网格蛋白非依赖性途径仅限于表皮层。盐胁迫诱导出第三种途径,该途径与网格蛋白无关,在选择货物时没有区别,并且遍及根的所有层。伴随地,内部细胞层中的小酸性隔室膨胀以形成更大的液泡状结构。缺乏Rab-GEF(鸟嘌呤核苷酸交换因子)VPS9a(真空蛋白分选9A)功能的植物既不会诱导第三种内吞途径,也不会响应盐胁迫而扩展液泡系统。植物也对盐过敏。因此,盐胁迫重新配置了不依赖网格蛋白的内吞作用,并重塑了内膜系统,在内部细胞层中形成了较大的液泡,这两个过程均与VPS9a活性的要求有关。

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