首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on ER-Derived Compartments in Plants: Zeolin. A New Recombinant Storage Protein Constructed Using Maize γ-Zein and Bean Phaseolin
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Focus Issue on ER-Derived Compartments in Plants: Zeolin. A New Recombinant Storage Protein Constructed Using Maize γ-Zein and Bean Phaseolin

机译:植物ER分隔室的重点问题:Zeolin。利用玉米γ-玉米醇溶蛋白和豆菜豆蛋白构建新的重组贮藏蛋白

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摘要

The major seed storage proteins of maize (Zea mays) and bean (Phaseolus vulgaris), zein and phaseolin, accumulate in the endoplasmic reticulum (ER) and in storage vacuoles, respectively. We show here that a chimeric protein composed of phaseolin and 89 amino acids of γ-zein, including the repeated and the Pro-rich domains, maintains the main characteristics of wild-type γ-zein: It is insoluble unless its disulfide bonds are reduced and forms ER-located protein bodies. Unlike wild-type phaseolin, the protein, which we called zeolin, accumulates to very high amounts in leaves of transgenic tobacco (Nicotiana tabacum). A relevant proportion of the ER chaperone BiP is associated with zeolin protein bodies in an ATP-sensitive fashion. Pulse-chase labeling confirms the high affinity of BiP to insoluble zeolin but indicates that, unlike structurally defective proteins that also extensively interact with BiP, zeolin is highly stable. We conclude that the γ-zein portion is sufficient to induce the formation of protein bodies also when fused to another protein. Because the storage proteins of cereals and legumes nutritionally complement each other, zeolin can be used as a starting point to produce nutritionally balanced and highly stable chimeric storage proteins.
机译:玉米(Zea mays)和豆类(Phaseolus vulgaris),玉米蛋白和菜豆蛋白的主要种子贮藏蛋白分别累积在内质网(ER)和贮藏液泡中。我们在这里显示了由菜豆蛋白和γ-玉米醇溶蛋白的89个氨基酸组成的嵌合蛋白,包括重复的和富含Pro的结构域,保持了野生型γ-玉米醇溶蛋白的主要特征:除非其二硫键还原,否则它是不溶的并形成位于ER的蛋白质体。与野生型菜豆蛋白不同,我们称其为Zeolin的蛋白在转基因烟草(Nicotiana tabacum)的叶片中积累了很高的含量。 ER分子伴侣BiP的相关比例以ATP敏感的方式与zeolin蛋白体相关。脉冲追踪标记证实了BiP对不溶性Zeolin的高度亲和力,但表明与结构上有缺陷的蛋白质(也与BiP广泛相互作用)不同,zeolin是高度稳定的。我们得出的结论是,当与另一种蛋白质融合时,γ-玉米醇溶蛋白部分也足以诱导蛋白质体的形成。因为谷物和豆类的贮藏蛋白在营养上是互补的,所以可以使用玉米蛋白作为生产营养平衡和高度稳定的嵌合贮藏蛋白的起点。

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