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在诱导蛋白体形成后,植物中 F1-V 融合重组蛋白的积累增加。

Higher accumulation of F1-V fusion recombinant protein in plants after induction of protein body formation.

机构信息

Center for Infectious Diseases and Vaccinology, The Biodesign Institute at Arizona State University, 1001 South McAllister Avenue, Tempe, AZ 85287-5401, USA.

出版信息

Plant Mol Biol. 2010 Jan;72(1-2):75-89. doi: 10.1007/s11103-009-9552-4. Epub 2009 Sep 30.

Abstract

Improving foreign protein accumulation is crucial for enhancing the commercial success of plant-based production systems since product yields have a major influence on process economics. Cereal grain evolved to store large amounts of proteins in tightly organized aggregates. In maize, gamma-Zein is the major storage protein synthesized by the rough endoplasmic reticulum (ER) and stored in specialized organelles called protein bodies (PB). Zera (gamma-Zein ER-accumulating domain) is the N-terminal proline-rich domain of gamma-zein that is sufficient to induce the assembly of PB formation. Fusion of the Zera domain to proteins of interest results in assembly of dense PB-like, ER-derived organelles, containing high concentration of recombinant protein. Our main goal was to increase recombinant protein accumulation in plants in order to enhance the efficiency of orally-delivered plant-made vaccines. It is well known that oral vaccination requires substantially higher doses than parental formulations. As a part of a project to develop a plant-made plague vaccine, we expressed our model antigen, the Yersinia pestis F1-V antigen fusion protein, with and without a fused Zera domain. We demonstrated that Zera-F1-V protein accumulation was at least 3x higher than F1-V alone when expressed in three different host plant systems: Ncotiana benthamiana, Medicago sativa (alfalfa) and Nicotiana tabacum NT1 cells. We confirmed the feasibility of using Zera technology to induce protein body formation in non-seed tissues. Zera expression and accumulation did not affect plant development and growth. These results confirmed the potential exploitation of Zera technology to substantially increase the accumulation of value-added proteins in plants.

摘要

提高外源蛋白的积累对于增强植物生产系统的商业成功至关重要,因为产物的产量对工艺经济性有重大影响。谷物进化为在紧密组织的聚集体中储存大量蛋白质。在玉米中,γ-Zein 是由粗面内质网(ER)合成并储存在称为蛋白体(PB)的专门细胞器中的主要储存蛋白。Zera(γ-Zein ER 积累结构域)是 γ-Zein 的 N 端富含脯氨酸的结构域,足以诱导 PB 形成的组装。将 Zera 结构域与感兴趣的蛋白质融合会导致致密的 PB 样 ER 衍生细胞器的组装,其中含有高浓度的重组蛋白。我们的主要目标是增加植物中外源蛋白的积累,以提高口服植物制造疫苗的效率。众所周知,口服疫苗需要比母体配方高得多的剂量。作为开发植物制造鼠疫疫苗项目的一部分,我们表达了我们的模型抗原,即鼠疫耶尔森氏菌 F1-V 抗原融合蛋白,带有和不带有融合的 Zera 结构域。我们证明,在三种不同的宿主植物系统(Ncotiana benthamiana、Medicago sativa(紫花苜蓿)和 Nicotiana tabacum NT1 细胞)中表达时,Zera-F1-V 蛋白的积累至少比单独的 F1-V 高 3 倍。我们证实了使用 Zera 技术在非种子组织中诱导蛋白体形成的可行性。Zera 的表达和积累不会影响植物的发育和生长。这些结果证实了利用 Zera 技术来实质性地提高植物中附加值蛋白积累的潜力。

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