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首页> 外文期刊>Plant and cell physiology >Identification and characterization of an Arabidopsis mutant with altered localization of NIP5;1, a plasma membrane boric acid channel, reveals the requirement for D-galactose in endomembrane organization. (Special Issue: Plant endomembranes.)
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Identification and characterization of an Arabidopsis mutant with altered localization of NIP5;1, a plasma membrane boric acid channel, reveals the requirement for D-galactose in endomembrane organization. (Special Issue: Plant endomembranes.)

机译:NIP5; 1,质膜硼酸通道的定位发生变化的拟南芥突变体的鉴定和表征揭示了膜组织中D-半乳糖的需求。 (特刊:植物内膜。)

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Endomembrane organization is important for various aspects of cell physiology, including membrane protein trafficking. To explore the molecular mechanisms regulating the trafficking of plasma membrane-localized proteins in plants, we screened for Arabidopsis mutants with defective localization of green fluorescent protein (GFP)-nodulin 26-like intrinsic protein (NIP)5;1. Fluorescence imaging-based screening led to the isolation of a mutant which accumulated abnormal intracellular aggregates labeled by GFP-NIP5;1. The aggregates appeared in epidermal cells in the root elongation zone and included the trans-Golgi network/early endosomes. Rough mapping and whole-genome sequencing identified the mutant as an allele of UDP-glucose 4-epimerase 4 (uge4)/root hair defective 1 (rhd1)/root epidermal bulgar 1 (reb 1), which was originally defined as a cell wall mutant. The responsible gene encodes UDP-glucose 4-epimerase 4 (UGE4), which functions in the biosynthesis of D-galactose, especially for the synthesis of the cell wall polysaccharide xyloglucan and arabinogalactan proteins (AGPs). The endomembrane aggregates in the mutants were absent in the presence of D-galactose, indicative of a requirement for a D-galactose-containing component in endomembrane organization. Genetic and pharmacological analyses suggested that the aggregates were not caused by the disruption of cell wall polysaccharides or the cytoskeleton. Overall, our results suggest that UGE4 activity in D-galactose synthesis is required for the structure of cell wall polysaccharides and endomembrane organization.
机译:膜的组织对于细胞生理学的各个方面都很重要,包括膜蛋白运输。为了探索调节植物中质膜定位蛋白运输的分子机制,我们筛选了绿色荧光蛋白(GFP)-结节蛋白26样内在蛋白(NIP)5; 1定位缺陷的拟南芥突变体。基于荧光成像的筛选导致了突变体的分离,该突变体积累了由GFP-NIP5; 1标记的异常细胞内聚集体。聚集体出现在根伸长区的表皮细胞中,并且包括反式高尔基网络/早期内体。粗略的作图和全基因组测序确定该突变体为UDP-葡萄糖4-表异构酶4(uge4)/根毛缺陷1(rhd1)/根表皮保加利亚1(reb 1)的等位基因,其最初被定义为细胞壁。突变体。负责的基因编码UDP-葡萄糖4-表异构酶4(UGE4),其在D-半乳糖的生物合成中起作用,特别是在细胞壁多糖木葡聚糖和阿拉伯半乳糖蛋白(AGP)的合成中。在D-半乳糖的存在下,突变体中的内膜聚集体不存在,这表明在内膜组织中需要含D-半乳糖的成分。遗传和药理学分析表明,聚集体不是由细胞壁多糖或细胞骨架的破坏引起的。总的来说,我们的结果表明,D-半乳糖合成中的UGE4活性是细胞壁多糖的结构和内膜组织所必需的。

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