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The Proteolytic Processing of Seed Storage Proteins in Arabidopsis Embryo Cells Starts in the Multivesicular Bodies

机译:拟南芥胚细胞中种子贮藏蛋白的蛋白水解过程始于多囊体。

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摘要

We have investigated the transport of storage proteins, their processing proteases, and the Vacuolar Sorting Receptor-1/Epidermal Growth Factor Receptor–Like Protein1 (VSR-1/ATELP1) receptor during the formation of protein storage vacuoles in Arabidopsis thaliana embryos by means of high-pressure freezing/freeze substitution, electron tomography, immunolabeling techniques, and subcellular fractionation. The storage proteins and their processing proteases are segregated from each other within the Golgi cisternae and packaged into separate vesicles. The storage protein–containing vesicles but not the processing enzyme–containing vesicles carry the VSR-1/ATELP1 receptor. Both types of secretory vesicles appear to fuse into a type of prevacuolar multivesicular body (MVB). We have also determined that the proteolytic processing of the 2S albumins starts in the MVBs. We hypothesize that the compartmentalized processing of storage proteins in the MVBs may allow for the sequential activation of processing proteases as the MVB lumen gradually acidifies.
机译:我们已经研究了拟南芥胚胎中蛋白质存储液泡形成过程中贮藏蛋白,其加工蛋白酶的运输以及Vacuolar分选受体-1 /表皮生长因子受体样蛋白1(VSR-1 / ATELP1)受体的运输。高压冷冻/冻结替代,电子断层扫描,免疫标记技术和亚细胞分级分离。存储蛋白及其加工蛋白酶在高尔基水箱中彼此分离,并包装成单独的囊泡。含有贮藏蛋白的囊泡但不含有加工酶的囊泡携带VSR-1 / ATELP1受体。两种类型的分泌囊泡似乎融合成一种类型的前室多囊泡体(MVB)。我们还确定2S白蛋白的蛋白水解过程始于MVB。我们假设,随着MVB内腔逐渐酸化,在MVB中对存储蛋白进行分区处理可能会允许顺序加工蛋白酶的顺序激活。

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