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首页> 外文期刊>Plant Physiology >A Trafficking Pathway for Anthocyanins Overlaps with the Endoplasmic Reticulum-to-Vacuole Protein-Sorting Route in Arabidopsis and Contributes to the Formation of Vacuolar Inclusions
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A Trafficking Pathway for Anthocyanins Overlaps with the Endoplasmic Reticulum-to-Vacuole Protein-Sorting Route in Arabidopsis and Contributes to the Formation of Vacuolar Inclusions

机译:花青素与拟南芥内质网至液泡蛋白分选途径重叠的贩运途径,并有助于形成液泡包涵体。

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Plants produce a very large number of specialized compounds that must be transported from their site of synthesis to the sites of storage or disposal. Anthocyanin accumulation has provided a powerful system to elucidate the molecular and cellular mechanisms associated with the intracellular trafficking of phytochemicals. Benefiting from the unique fluorescent properties of anthocyanins, we show here that in Arabidopsis (Arabidopsis thaliana), one route for anthocyanin transport to the vacuole involves vesicle-like structures shared with components of the secretory pathway. By colocalizing the red fluorescence of the anthocyanins with green fluorescent protein markers of the endomembrane system in Arabidopsis seedlings, we show that anthocyanins are also sequestered to the endoplasmic reticulum and to endoplasmic reticulum-derived vesicle-like structures targeted directly to the protein storage vacuole in a Golgi-independent manner. Moreover, our results indicate that vacuolar accumulation of anthocyanins does not depend solely on glutathione S-transferase activity or ATP-dependent transport mechanisms. Indeed, we observed a dramatic increase of anthocyanin-filled subvacuolar structures, without a significant effect on total anthocyanin levels, when we inhibited glutathione S-transferase activity, or the ATP-dependent transporters with vanadate, a general ATPase inhibitor. Taken together, these results provide evidence for an alternative novel mechanism of vesicular transport and vacuolar sequestration of anthocyanins in Arabidopsis.
机译:植物产生大量特殊的化合物,必须将其从合成位点运输到储存或处置位点。花青素的积累提供了一个强大的系统,以阐明与植物内化学物质的细胞内运输相关的分子和细胞机制。得益于花青素独特的荧光特性,我们在这里表明在拟南芥(Arabidopsis thaliana)中,花青素转运至液泡的一种途径涉及与分泌途径组分共有的囊泡状结构。通过将拟南芥幼苗中花青素的红色荧光与内膜系统的绿色荧光蛋白标记共定位,我们显示花青素也被隔离到内质网和内质网衍生的囊泡状结构,直接靶向于蛋白贮藏液泡高尔基独立的方式。此外,我们的结果表明,花青素的液泡积累不仅仅取决于谷胱甘肽S-转移酶活性或ATP依赖性转运机制。的确,当我们抑制谷胱甘肽S-转移酶活性或使用一般ATPase抑制剂钒酸盐的ATP依赖性转运蛋白时,我们观察到花青素填充的亚真空结构显着增加,而对总花青素水平没有显着影响。综上所述,这些结果为拟南芥中花色苷的囊泡运输和液泡螯合提供了另一种新颖的机制的证据。

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