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首页> 外文期刊>Molecular biology of the cell >A golgi-localized hexose transporter is involved in heterotrimeric G protein-mediated early development in Arabidopsis
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A golgi-localized hexose transporter is involved in heterotrimeric G protein-mediated early development in Arabidopsis

机译:高尔基体定位的己糖转运蛋白参与异源三聚体G蛋白介导的拟南芥的早期发育。

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摘要

Signal transduction involving heterotrimeric G proteins is universal among fungi, animals, and plants. In plants and fungi, the best understood function for the G protein complex is its modulation of cell proliferation and one of several important signals that are known to modulate the rate at which these cells proliferate is D-glucose. Arabidopsis thaliana seedlings lacking the beta subunit (AGB1) of the G protein complex have altered cell division in the hypocotyl and are D-glucose hypersensitive. With the aim to discover new elements in G protein signaling, we screened for gain-of-function suppressors of altered cell proliferation during early development in the agb1-2 mutant background. One agb1-2dependent suppressor, designated sgb1-1(D) for suppressor of G protein betal (agb1-2), restored to wild type the altered cell division in the hypocotyl and sugar hypersensitivity of the agb1-2 mutant. Consistent with AGB1 localization, SGB1 is found at the highest steady-state level in tissues with active cell division, and this level increases in hypocotyls when grown on D-glucose and sucrose. SGB1 is shown here to be a Golgi-localized hexose transporter and acts genetically with AGB1 in early seedling development.
机译:涉及异三聚体G蛋白的信号转导在真菌,动物和植物中普遍存在。在植物和真菌中,对G蛋白复合物最能理解的功能是其对细胞增殖的调节作用,而已知的几种重要的调节这些细胞增殖速率的重要信号之一就是D-葡萄糖。缺少G蛋白复合物的β亚基(AGB1)的拟南芥幼苗已经改变了下胚轴中的细胞分裂,并且对D-葡萄糖过敏。为了发现G蛋白信号传导中的新元素,我们筛选了在agb1-2突变体背景下早期发育过程中细胞增殖改变的功能获得抑制剂。一种被称为sgb1-1(D)的Gb抑制蛋白(agb1-2)的抑制因子,即agb1-2依赖性抑制剂,恢复到agb1-2突变体的下胚轴和糖超敏性改变的细胞分裂为野生型。与AGB1定位一致,在具有活跃细胞分裂的组织中发现SGB1处于最高稳态水平,当在D-葡萄糖和蔗糖上生长时,下胚轴中的该水平升高。 SGB1在此处显示是高尔基体定位的己糖转运蛋白,在幼苗早期发育中与AGB1发生遗传关系。

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