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The human immunodeficiency virus antigen Nef forms protein bodies in leaves of transgenic tobacco when fused to zeolin

机译:当与玉米蛋白融合时人类免疫缺陷病毒抗原Nef在转基因烟草叶片中形成蛋白质体

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摘要

Protein bodies (PB) are stable polymers naturally formed by certain seed storage proteins within the endoplasmic reticulum (ER). The human immunodeficiency virus negative factor (Nef) protein, a potential antigen for the development of an anti-viral vaccine, is highly unstable when introduced into the plant secretory pathway, probably because of folding defects in the ER environment. The aim of this study was to promote the formation of Nef-containing PB in tobacco (Nicotiana tabacum) leaves by fusing the Nef sequence to the N-terminal domains of the maize storage protein γ-zein or to the chimeric protein zeolin (which efficiently forms PB and is composed of the vacuolar storage protein phaseolin fused to the N-terminal domains of γ-zein). Protein blots and pulse–chase indicate that fusions between Nef and the same γ-zein domains present in zeolin are degraded by ER quality control. Consistently, a mutated zeolin, in which wild-type phaseolin was substituted with a defective version known to be degraded by ER quality control, is unstable in plant cells. Fusion of Nef to the entire zeolin sequence instead allows the formation of PB detectable by electron microscopy and subcellular fractionation, leading to zeolin–Nef accumulation higher than 1% of total soluble protein, consistently reproduced in independent transgenic plants. It is concluded that zeolin, but not its γ-zein portion, has a positive dominant effect over ER quality control degradation. These results provide insights into the requirements for PB formation and avoidance of quality-control degradation, and indicate a strategy for enhancing foreign protein accumulation in plants.
机译:蛋白体(PB)是由内质网(ER)中某些种子存储蛋白自然形成的稳定聚合物。人类免疫缺陷病毒阴性因子(Nef)蛋白(一种开发抗病毒疫苗的潜在抗原)在引入植物分泌途径时高度不稳定,可能是由于ER环境中的折叠缺陷。这项研究的目的是通过将Nef序列融合到玉米贮藏蛋白γ-玉米醇溶蛋白的N末端结构域或嵌合蛋白zeolin上来促进烟草叶中含Nef的PB的形成。形式为PB,由液泡贮藏蛋白菜豆蛋白融合到γ-玉米醇溶蛋白的N端结构域组成。蛋白质印迹和脉冲追踪表明,内质网和存在于沸石中的相同γ-玉米醇溶蛋白域之间的融合被ER质量控制降解。一致地,突变的zeolin在植物细胞中不稳定,其中野生型菜豆被已知通过ER质量控制降解的缺陷型取代。 Nef与整个zeolin序列的融合反而允许通过电子显微镜和亚细胞分离检测到PB的形成,从而导致zeolin-Nef的积累高于总可溶性蛋白的1%,在独立的转基因植物中始终如一地繁殖。结论是,与ER质量控制降解相比,zeolin(而不是其γ-玉米醇溶蛋白部分)具有积极的主导作用。这些结果提供了对PB形成的要求和避免质量控制降解的见识,并表明了增强植物中外源蛋白质积累的策略。

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