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Sugar Transporter STP7 Specificity for l-Arabinose and d-Xylose Contrasts with the Typical Hexose Transporters STP8 and STP12

机译:糖转运蛋白STP7对典型的己糖转运蛋白STP8和STP12的l-阿拉伯糖和d-木糖的特异性

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摘要

The controlled distribution of sugars between assimilate-exporting source tissues and sugar-consuming sink tissues is a key element for plant growth and development. Monosaccharide transporters of the SUGAR TRANSPORT PROTEIN (STP) family contribute to the uptake of sugars into sink cells. Here, we report on the characterization of STP7, STP8, and STP12, three previously uncharacterized members of this family in Arabidopsis (Arabidopsis thaliana). Heterologous expression in yeast (Saccharomyces cerevisiae) revealed that STP8 and STP12 catalyze the high-affinity proton-dependent uptake of glucose and also accept galactose and mannose. STP12 additionally transports xylose. STP8 and STP12 are highly expressed in reproductive organs, where their protein products might contribute to sugar uptake into the pollen tube and the embryo sac. stp8.1 and stp12.1 T-DNA insertion lines developed normally, which may point toward functional redundancy with other STPs. In contrast to all other STPs, STP7 does not transport hexoses but is specific for the pentoses l-arabinose and d-xylose. STP7-promoter-reporter gene plants showed an expression of STP7 especially in tissues with high cell wall turnover, indicating that STP7 might contribute to the uptake and recycling of cell wall sugars. Uptake analyses with radioactive l-arabinose revealed that 11 other STPs are able to transport l-arabinose with high affinity. Hence, functional redundancy might explain the missing-mutant phenotype of two stp7 T-DNA insertion lines. Together, these data complete the characterization of the STP family and present the STPs as new l-arabinose transporters for potential biotechnological applications.
机译:在同化物输出源组织和消耗糖的汇聚组织之间糖的受控分布是植物生长和发育的关键要素。糖运输蛋白(STP)家族的单糖转运蛋白有助于糖类吸收到水槽细胞中。在这里,我们报道了拟南芥(Arabidopsis thaliana)该家族三个以前未鉴定的成员STP7,STP8和STP12的表征。酵母中的异源表达(酿酒酵母)表明STP8和STP12催化葡萄糖对高质子依赖质子的吸收,并且还接受半乳糖和甘露糖。 STP12还运输木糖。 STP8和STP12在生殖器官中高度表达,在那里它们的蛋白质产物可能有助于糖进入花粉管和胚囊中。 stp8.1和stp12.1 T-DNA插入线正常发育,可能指向与其他STP的功能冗余。与所有其他STP相比,STP7不转运己糖,但对戊糖1-阿拉伯糖和d-木糖具有特异性。 STP7-启动子-报告基因植物显示出STP7的表达,特别是在具有高细胞壁周转率的组织中,这表明STP7可能有助于细胞壁糖的吸收和再循环。放射性l-阿拉伯糖的吸收分析表明,其他11种STP能够以高亲和力转运l-阿拉伯糖。因此,功能冗余可能解释了两个stp7 T-DNA插入线的缺失突变表型。这些数据一起完成了STP家族的鉴定,并将STP展示为潜在生物技术应用中的新型1-阿拉伯糖转运蛋白。

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