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A Polypyrimidine Tract Binding Protein, Pumpkin RBP50, Forms the Basis of a Phloem-Mobile Ribonucleoprotein Complex

机译:聚嘧啶区结合蛋白南瓜RBP50形成韧皮部移动核糖核蛋白复合物的基础

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RNA binding proteins (RBPs) are integral components of ribonucleoprotein (RNP) complexes and play a central role in RNA processing. In plants, some RBPs function in a non-cell-autonomous manner. The angiosperm phloem translocation stream contains a unique population of RBPs, but little is known regarding the nature of the proteins and mRNA species that constitute phloem-mobile RNP complexes. Here, we identified and characterized a 50-kD pumpkin (Cucurbita maxima cv Big Max) phloem RNA binding protein (RBP50) that is evolutionarily related to animal polypyrimidine tract binding proteins. In situ hybridization studies indicated a high level of RBP50 transcripts in companion cells, while immunolocalization experiments detected RBP50 in both companion cells and sieve elements. A comparison of the levels of RBP50 present in vascular bundles and phloem sap indicated that this protein is highly enriched in the phloem sap. Heterografting experiments confirmed that RBP50 is translocated from source to sink tissues. Collectively, these findings established that RBP50 functions as a non-cell-autonomous RBP. Protein overlay, coimmunoprecipitation, and cross-linking experiments identified the phloem proteins and mRNA species that constitute RBP50-based RNP complexes. Gel mobility-shift assays demonstrated that specificity, with respect to the bound mRNA, is established by the polypyrimidine tract binding motifs within such transcripts. We present a model for RBP50-based RNP complexes within the pumpkin phloem translocation stream.
机译:RNA结合蛋白(RBP)是核糖核蛋白(RNP)复合物的组成部分,在RNA加工中起着核心作用。在植物中,某些RBP以非细胞自主方式发挥作用。被子植物韧皮部易位流包含独特的RBP群体,但对于组成韧皮部可移动RNP复合体的蛋白质和mRNA种类的性质知之甚少。在这里,我们确定并鉴定了与动物聚嘧啶束结合蛋白进化相关的50 kD南瓜(最大南瓜)韧皮部RNA结合蛋白(RBP50)。原位杂交研究表明伴侣细胞中的RBP50转录水平很高,而免疫定位实验则在伴侣细胞和筛子元件中都检测到了RBP50。比较血管束和韧皮部汁液中存在的RBP50水平,表明该蛋白在韧皮部汁液中高度富集。异种移植实验证实,RBP50从源头转移到下沉组织。总的来说,这些发现确定RBP50起非细胞自主RBP的作用。蛋白质覆盖,共免疫沉淀和交联实验鉴定了韧皮部蛋白质和mRNA种类,它们构成了基于RBP50的RNP复合物。凝胶迁移率移动分析表明,相对于结合的mRNA的特异性是由此类转录物中的多嘧啶束结合基序建立的。我们提出了南瓜韧皮部易位流内基于RBP50的RNP复合物的模型。

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