首页> 美国卫生研究院文献>Frontiers in Plant Science >Optimization of Ammonium Sulfate Concentration for Purification of Colorectal Cancer Vaccine Candidate Recombinant Protein GA733-FcK Isolated from Plants
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Optimization of Ammonium Sulfate Concentration for Purification of Colorectal Cancer Vaccine Candidate Recombinant Protein GA733-FcK Isolated from Plants

机译:纯化植物中分离的结直肠癌疫苗候选重组蛋白GA733-FcK的硫酸铵浓度优化

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摘要

A protein purification procedure is required to obtain high-value recombinant injectable vaccine proteins produced in plants as a bioreactor. However, existing purification procedures for plant-derived recombinant proteins are often not optimized and are inefficient, with low recovery rates. In our previous study, we used 25–30% ammonium sulfate to precipitate total soluble proteins (TSPs) in purification process for recombinant proteins from plant leaf biomass which has not been optimized. Thus, the objective in this study is to optimize the conditions for plant-derived protein purification procedures. Various ammonium sulfate concentrations (15–80%) were compared to determine their effects on TSPs yield. With 50% ammonium sulfate, the yield of precipitated TSP was the highest, and that of the plant-derived colorectal cancer-specific surface glycoprotein GA733 fused to the Fc fragment of human IgG tagged with endoplasmic reticulum retention signal KDEL (GA733P-FcK) protein significantly increased 1.8-fold. SDS-PAGE analysis showed that the purity of GA733P-FcK protein band appeared to be similar to that of an equal dose of mammalian-derived GA733-Fc (GA733M-Fc). The binding activity of purified GA733P-FcK to anti-GA733 mAb was as efficient as the native GA733M-Fc. Thus, the purification process was effectively optimized for obtaining a high yield of plant-derived antigenic protein with good quality. In conclusion, the purification recovery rate of large quantities of recombinant protein from plant expression systems can be enhanced via optimization of ammonium sulfate concentration during downstream processes, thereby offering a promising solution for production of recombinant GA733-Fc protein in plants.
机译:需要蛋白质纯化程序以获得在植物中作为生物反应器生产的高价值重组可注射疫苗蛋白质。然而,现有的用于植物来源的重组蛋白的纯化程序常常没有被优化并且效率低下,回收率低。在我们之前的研究中,我们在纯化过程中使用了25%至30%的硫酸铵沉淀出总可溶性蛋白(TSP),这些蛋白来自尚未优化的植物叶片生物质。因此,本研究的目的是优化植物衍生蛋白纯化程序的条件。比较了各种浓度的硫酸铵(15–80%),以确定它们对TSP产量的影响。用50%硫酸铵沉淀的TSP的产率最高,而与植物来源的结直肠癌特异性表面糖蛋白GA733融合到带有内质网保留信号KDEL标记的人IgG的Fc片段上的产率最高(GA733

-FcK)蛋白明显增加了1.8倍。 SDS-PAGE分析表明,GA733 P -FcK蛋白条带的纯度似乎与等剂量的哺乳动物来源的GA733-Fc(GA733 M - Fc)。纯化的GA733 P -FcK与抗GA733 mAb的结合活性与天然GA733 M -Fc一样有效。因此,有效地优化了纯化过程,以高质量获得高产率的植物来源的抗原蛋白。总之,可以通过优化下游过程中硫酸铵的浓度来提高植物表达系统中大量重组蛋白的纯化回收率,从而为在植物中生产重组GA733-Fc蛋白提供了有希望的解决方案。

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