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Identification of a Vacuolar Sucrose Transporter in Barley and Arabidopsis Mesophyll Cells by a Tonoplast Proteomic Approach

机译:通过液泡膜蛋白质组学方法鉴定大麦和拟南芥叶肉细胞中的叶片蔗糖转运蛋白

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摘要

The vacuole is the main cellular storage pool, where sucrose (Suc) accumulates to high concentrations. While a limited number of vacuolar membrane proteins, such as V-type H+-ATPases and H+-pyrophosphatases, are well characterized, the majority of vacuolar transporters are still unidentified, among them the transporter(s) responsible for vacuolar Suc uptake and release. In search of novel tonoplast transporters, we used a proteomic approach, analyzing the tonoplast fraction of highly purified mesophyll vacuoles of the crop plant barley (Hordeum vulgare). We identified 101 proteins, including 88 vacuolar and putative vacuolar proteins. The Suc transporter (SUT) HvSUT2 was discovered among the 40 vacuolar proteins, which were previously not reported in Arabidopsis (Arabidopsis thaliana) vacuolar proteomic studies. To confirm the tonoplast localization of this Suc transporter, we constructed and expressed green fluorescent protein (GFP) fusion proteins with HvSUT2 and its closest Arabidopsis homolog, AtSUT4. Transient expression of HvSUT2-GFP and AtSUT4-GFP in Arabidopsis leaves and onion (Allium cepa) epidermal cells resulted in green fluorescence at the tonoplast, indicating that these Suc transporters are indeed located at the vacuolar membrane. Using a microcapillary, we selected mesophyll protoplasts from a leaf protoplast preparation and demonstrated unequivocally that, in contrast to the companion cell-specific AtSUC2, HvSUT2 and AtSUT4 are expressed in mesophyll protoplasts, suggesting that HvSUT2 and AtSUT4 are involved in transport and vacuolar storage of photosynthetically derived Suc.
机译:液泡是主要的细胞储存池,蔗糖(Suc)在那里积累到高浓度。尽管有限数量的液泡膜蛋白,例如V型H + -ATPases和H + -焦磷酸酶已得到很好的表征,但大多数液泡转运蛋白仍未被鉴定,其中的转运蛋白负责液泡中Suc的吸收和释放。为了寻找新型的液泡膜转运蛋白,我们使用了一种蛋白质组学方法,分析了农作物大麦(Hordeum vulgare)的高度纯化的叶肉液泡的液泡膜部分。我们鉴定了101种蛋白质,包括88种液泡蛋白和推定的液泡蛋白。在40个液泡蛋白中发现了Suc转运蛋白(SUT)HvSUT2,以前在拟南芥(Arabidopsis thaliana)液泡蛋白质组学研究中没有报道。为了确认此Suc转运蛋白的液泡膜定位,我们构建并表达了带有HvSUT2及其最接近的拟南芥属同源基因AtSUT4的绿色荧光蛋白(GFP)融合蛋白。 HvSUT2-GFP和AtSUT4-GFP在拟南芥叶片和洋葱(洋葱)表皮细胞中的瞬时表达在液泡膜中产生绿色荧光,表明这些Suc转运蛋白确实位于液泡膜上。我们使用微毛细管从叶原生质体制剂中选择了叶肉原生质体,并明确证明,与伴随细胞特异性的AtSUC2不同,HvSUT2和AtSUT4在叶肉原生质体中表达,表明HvSUT2和AtSUT4参与了叶绿体的转运和液泡贮藏光合作用衍生的Suc。

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