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Native and artificial reticuloplasmins co-accumulate in distinct domainsof the endoplasmic reticulum and in post-endoplasmic reticulumcompartments

机译:天然和人工网状网纹蛋白在内质网和内质网后隔室的不同区域共积累

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We compared the subcellular distribution of native and artificial reticuloplasmins in endosperm, callus, and leaf tissues of transgenic rice (Oryza sativa) to determine the distribution of these proteins among endoplasmic reticulum (ER) and post-ER compartments. The native reticuloplasmin was calreticulin. The artificial reticuloplasmin was a recombinant single-chain antibody (scFv), expressed with an N-terminal signal peptide and the C-terminal KDEL sequence for retrieval to the ER (scFvT84.66-KDEL). We found that both molecules were distributed in the same manner. In endosperm, each accumulated in ER-derived prolamine protein bodies, but also in glutelin protein storage vacuoles, even though glutelins are known to pass through the Golgi apparatus en route to these organelles. This finding may suggest that similar mechanisms are involved in the sorting of reticuloplasmins and rice seed storage proteins. However, the presence of reticuloplasmins in protein storage vacuoles could also be due to simple dispersal into these compartments during protein storage vacuole biogenesis, before glutelin deposition. In callus and leaf mesophyll cells, both reticuloplasmins accumulated in ribosome-coated vesicles probably derived directly from the rough ER.
机译:我们比较了转基因水稻(Oryza sativa)的胚乳,愈伤组织和叶组织中天然和人工网状细胞溶质蛋白的亚细胞分布,以确定这些蛋白在内质网(ER)和后ER区室中的分布。天然的网状纤溶酶是钙网蛋白。人工网状纤溶酶是一种重组单链抗体(scFv),以N端信号肽和C端KDEL序列表达,可检索到ER(scFvT84.66-KDEL)。我们发现两个分子以相同的方式分布。在胚乳中,尽管已知谷蛋白通过高尔基体到达这些细胞器,但每种都在ER衍生的谷氨酰胺蛋白体中积累,但在谷蛋白蛋白储存液泡中也积累。这一发现可能表明类似的机制参与了网状纤溶酶和水稻种子贮藏蛋白的分类。然而,网状纤溶酶在蛋白质储存液泡中的存在也可能是由于在蛋白质储存液泡生物发生过程中,在谷蛋白沉淀之前简单地分散到这些隔室中。在愈伤组织和叶肉细胞中,网状纤溶酶积累在核糖体包被的囊泡中,可能直接来源于粗糙的内质网。

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