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Messenger RNA targeting of rice seed storage proteins to specific ER subdomains

机译:使水稻种子贮藏蛋白的信使RNA靶向特定的ER亚域

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Rice seeds, a rich reserve of starch and protein, are a major food source in many countries. Unlike the seeds of other plants, which typically accumulate one major type of storage protein, rice seeds use two major classes, prolamines and globulin-like glutelins. Both storage proteins are synthesized on the endoplasmic reticulum (ER) and translocated to the ER lumen, but are then sorted into separate intracellular compartments. Prolamines are retained in the ER lumen as protein bodies whereas glutelins are transported and stored in protein storage vacuoles. Mechanisms responsible for the retention of prolamines within the ER lumen and their assembly into intracisternal inclusion granules are unknown, but the involvement of RNA localization has been suggested. Here we show that the storage protein RNAs are localized to distinct ER membranes and that prolamine RNAs are targeted to the prolamine protein bodies by a mechanism based on RNA signal(s), a process that also requires a translation initiation codon. Our results indicate that the ER may be composed of subdomains that specialize in the synthesis of proteins directed to different compartments of the plant endomembrane system.
机译:稻米种子富含淀粉和蛋白质,是许多国家的主要食物来源。与通常会积累一种主要类型的存储蛋白的其他植物的种子不同,稻米种子使用两种主要的蛋白:谷氨酰胺和类球蛋白的谷蛋白。两种存储蛋白都在内质网(ER)上合成并易位到ER内腔,但随后被分类到单独的细胞内区室中。谷醇溶蛋白作为蛋白体保留在ER腔中,而谷蛋白则运输并存储在蛋白存储液泡中。目前尚不清楚负责在内质网腔内保留谷醇溶蛋白和将其组装成脑池内包涵体颗粒的机制,但已提出了RNA定位的参与。在这里,我们显示存储蛋白RNA定位在不同的ER膜上,而谷醇溶蛋白RNA通过基于RNA信号的机制靶向谷醇溶蛋白蛋白体,该过程也需要翻译起始密码子。我们的结果表明,内质网可能由亚结构域组成,这些亚结构域专门从事针对植物内膜系统不同区室的蛋白质的合成。

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