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Production of Human IFNγ Protein in Nicotiana benthamiana Plant through an Enhanced Expression System Based on Bamboo mosaic Virus

机译:通过基于竹花叶病毒的增强表达系统在本氏烟草中生产人IFNγ蛋白

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摘要

Plant-based systems are safe alternatives to the current platforms for the production of biologically active therapeutic proteins. However, plant-based expression systems face certain major challenges, including the relatively low productivity and the generation of target proteins in biologically active forms. The use of plant virus-based expression systems has been shown to enhance yields, but further improvement is still required to lower the production cost. In this study, various strategies were employed to increase the yields of an important therapeutic protein, human interferon gamma (IFNγ), in Nicotiana benthamiana through modifications of expression vectors based on potexviruses. Among these, the vector based on a coat protein (CP)-deficient Bamboo mosaic virus (BaMV), pKB△CHis, was shown to exhibit the highest expression level for the unmodified IFNγ. Truncation of the N-terminal signal peptide of IFN (designated mIFNγ) resulted in a nearly seven-fold increase in yield. Co-expression of a silencing suppressor protein by replacing the coding sequence of BaMV movement protein with that of P19 led to a 40% increase in mIFNγ accumulation. The fusion of endoplasmic reticulum (ER) retention signal with mIFNγ significantly enhanced the accumulation ratio of biologically active dimeric mIFNγ to 87% relative to the non-active monomeric form. The construct pKB19mIFNγER, employing the combination of all the above enhancement strategies, gave the highest level of protein accumulation, up to 119 ± 0.8 μg/g fresh weight, accounting for 2.5% of total soluble protein (TSP) content. These findings advocate the application of the modified BaMV-based vector as a platform for high-level expression of therapeutic protein in N. benthamiana.
机译:基于植物的系统是目前用于生产生物活性治疗蛋白的平台的安全替代品。然而,基于植物的表达系统面临某些主要挑战,包括相对较低的生产率和具有生物活性形式的靶蛋白的产生。已显示使用基于植物病毒的表达系统可提高产量,但仍需要进一步改进以降低生产成本。在这项研究中,通过修饰基于potexviruses的表达载体,采用了各种策略来增加本生烟草中重要的治疗性蛋白质人干扰素γ(IFNγ)的产量。其中,基于外壳蛋白(CP)缺陷的Bamboo花叶病毒(BaMV)的载体pKB△CHis显示出未修饰IFNγ的最高表达水平。截短IFN的N端信号肽(称为mIFNγ)的收率提高了近7倍。通过用P19替换BaMV运动蛋白的编码序列来共同表达沉默抑制蛋白,导致mIFNγ积累增加40%。内质网(ER)保留信号与mIFNγ的融合显着提高了生物活性二聚体mIFNγ相对于非活性单体形式的蓄积率,达到87%。结合以上所有增强策略的构建体pKB19mIFNγER产生的蛋白质积累水平最高,最高为119±0.8μg/ g鲜重,占总可溶性蛋白质(TSP)含量的2.5%。这些发现主张将修饰的基于BaMV的载体用作在本氏烟草中高表达治疗蛋白的平台。

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