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SWEET17, a facilitative transporter, mediates fructose transport across the tonoplast of Arabidopsis roots and leaves

机译:SWEET17,一种促进性转运蛋白,通过果糖介导拟南芥根和叶的液泡膜转运

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摘要

Fructose (Fru) is a major storage form of sugars found in vacuoles, yet the molecular regulation of vacuolar Fru transport is poorly studied. Although SWEET17 (for SUGARS WILL EVENTUALLY BE EXPORTED TRANSPORTERS17) has been characterized as a vacuolar Fru exporter in leaves, its expression in leaves is low. Here, RNA analysis and SWEET17-β-glucuronidase/-GREEN FLUORESCENT PROTEIN fusions expressed in Arabidopsis (Arabidopsis thaliana) reveal that SWEET17 is highly expressed in the cortex of roots and localizes to the tonoplast of root cells. Expression of SWEET17 in roots was inducible by Fru and darkness, treatments that activate accumulation and release of vacuolar Fru, respectively. Mutation and ectopic expression of SWEET17 led to increased and decreased root growth in the presence of Fru, respectively. Overexpression of SWEET17 specifically reduced the Fru content in leaves by 80% during cold stress. These results intimate that SWEET17 functions as a Fru-specific uniporter on the root tonoplast. Vacuoles overexpressing SWEET17 showed increased [14C]Fru uptake compared with the wild type. SWEET17-mediated Fru uptake was insensitive to ATP or treatment with NH4Cl or carbonyl cyanide m-chlorophenyl hydrazone, indicating that SWEET17 functions as an energy-independent facilitative carrier. The Arabidopsis genome contains a close paralog of SWEET17 in clade IV, SWEET16. The predominant expression of SWEET16 in root vacuoles and reduced root growth of mutants under Fru excess indicate that SWEET16 also functions as a vacuolar transporter in roots. We propose that in addition to a role in leaves, SWEET17 plays a key role in facilitating bidirectional Fru transport across the tonoplast of roots in response to metabolic demand to maintain cytosolic Fru homeostasis.
机译:果糖(Fru)是在液泡中发现的主要糖类储存形式,但对液泡Fru转运的分子调控研究很少。尽管SWEET17(对于蔗糖来说将是出口转运蛋白)已被描述为叶片中的液泡Fru出口蛋白,但其在叶片中的表达却很低。在这里,RNA分析和拟南芥(Arabidopsis thaliana)中表达的SWEET17-β-葡萄糖醛酸酶/ -GREEN荧光蛋白融合蛋白显示SWEET17在根的皮层中高度表达,并位于根细胞的液泡膜中。 SWEET17在根中的表达可通过Fru和黑暗诱导,分别激活液泡Fru的积累和释放。在Fru存在下,SWEET17的突变和异位表达分别导致根生长增加和减少。在寒冷胁迫下,SWEET17的过度表达可将叶片中的Fru含量降低80%。这些结果表明,SWEET17在根液泡膜上充当Fru特异性单向转运蛋白。与野生型相比,过表达SWEET17的液泡显示[14C] Fru摄取增加。 SWEET17介导的Fru吸收对ATP或用NH4Cl或羰基氰化物间氯苯基处理均不敏感,表明SWEET17充当能量独立的促进载体。拟南芥基因组在进化枝IV SWEET16中包含SWEET17的近旁系。 SWEET16在根泡中的主要表达和突变体在Fru过量下根系生长的减少表明SWEET16在根中也起液泡转运蛋白的作用。我们提出,除了在叶片中发挥作用外,SWEET17在促进双向Fru跨根液泡运输方面也起着关键作用,以响应代谢需求以维持胞质Fru稳态。

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