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弹性蛋白样多肽和疏水蛋白对转基因烟草植株中重组血凝素积累的影响。

Influence of elastin-like polypeptide and hydrophobin on recombinant hemagglutinin accumulations in transgenic tobacco plants.

作者信息

Phan Hoang Trong, Hause Bettina, Hause Gerd, Arcalis Elsa, Stoger Eva, Maresch Daniel, Altmann Friedrich, Joensuu Jussi, Conrad Udo

机构信息

Department of Molecular Genetics, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany; Department of Plant Cell Biotechnology, Institute of Biotechnology (IBT), Vietnam Academy of Science and Technology (VAST), Hanoi, Vietnam.

Cell and Metabolic Biology, Leibniz Institute of Plant Biochemistry (IPB), Halle, Germany.

出版信息

PLoS One. 2014 Jun 10;9(6):e99347. doi: 10.1371/journal.pone.0099347. eCollection 2014.

Abstract

Fusion protein strategies are useful tools to enhance expression and to support the development of purification technologies. The capacity of fusion protein strategies to enhance expression was explored in tobacco leaves and seeds. C-terminal fusion of elastin-like polypeptides (ELP) to influenza hemagglutinin under the control of either the constitutive CaMV 35S or the seed-specific USP promoter resulted in increased accumulation in both leaves and seeds compared to the unfused hemagglutinin. The addition of a hydrophobin to the C-terminal end of hemagglutinin did not significantly increase the expression level. We show here that, depending on the target protein, both hydrophobin fusion and ELPylation combined with endoplasmic reticulum (ER) targeting induced protein bodies in leaves as well as in seeds. The N-glycosylation pattern indicated that KDEL sequence-mediated retention of leaf-derived hemagglutinins and hemagglutinin-hydrophobin fusions were not completely retained in the ER. In contrast, hemagglutinin-ELP from leaves contained only the oligomannose form, suggesting complete ER retention. In seeds, ER retention seems to be nearly complete for all three constructs. An easy and scalable purification method for ELPylated proteins using membrane-based inverse transition cycling could be applied to both leaf- and seed-expressed hemagglutinins.

摘要

融合蛋白策略是增强表达和支持纯化技术发展的有用工具。在烟草叶片和种子中探索了融合蛋白策略增强表达的能力。在组成型CaMV 35S或种子特异性USP启动子的控制下,将弹性蛋白样多肽(ELP)与流感血凝素进行C端融合,与未融合的血凝素相比,叶片和种子中的积累量均增加。在血凝素的C末端添加疏水蛋白并没有显著提高表达水平。我们在此表明,根据靶蛋白的不同,疏水蛋白融合和ELP化与内质网(ER)靶向相结合,可在叶片和种子中诱导蛋白体形成。N-糖基化模式表明,KDEL序列介导的叶片来源的血凝素和血凝素-疏水蛋白融合物在ER中并未完全保留。相比之下,叶片中的血凝素-ELP仅含有高甘露糖形式,表明其在ER中完全保留。在种子中,所有三种构建体的ER保留似乎几乎是完全的。使用基于膜的反向转变循环对ELP化蛋白进行简单且可扩展的纯化方法,可应用于叶片和种子表达的血凝素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1498/4051685/4544cfd048bb/pone.0099347.g001.jpg

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