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Protein body-inducing fusions for high-level production and purification of recombinant proteins in plants

机译:植物的高水平生产和纯化植物中重组蛋白的蛋白质诱导蛋白质诱导融合

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For the past two decades, therapeutic and industrially important proteins have been expressed in plants with varying levels of success. The two major challenges hindering the economical production of plant-made recombinant proteins include inadequate accumulation levels and the lack of efficient purification methods. To address these limitations, several fusion protein strategies have been recently developed to significantly enhance the production yield of plant-made recombinant proteins, while simultaneously assisting in their subsequent purification. Elastin-like polypeptides are thermally responsive biopolymers composed of a repeating pentapeptide ‘VPGXG’ sequence that are valuable for the purification of recombinant proteins. Hydrophobins are small fungal proteins capable of altering the hydrophobicity of their respective fusion partner, thus enabling efficient purification by surfactant-based aqueous two-phase systems. Zera, a domain of the maize seed storage protein -zein, can induce the formation of protein storage bodies, thus facilitating the recovery of fused proteins using density-based separation methods. These three novel protein fusion systems have also been shown to enhance the accumulation of a range of different recombinant proteins, while concurrently inducing the formation of protein bodies. The packing of these fusion proteins into protein bodies may exclude the recombinant protein from normal physiological turnover. Furthermore, these systems allow for quick, simple and inexpensive nonchromatographic purification of the recombinant protein, which can be scaled up to industrial levels of protein production. This review will focus on the similarities and differences of these artificial storage organelles, their biogenesis and their implication for the production of recombinant proteins in plants and their subsequent purification.
机译:在过去的二十年中,治疗和工业上重要的蛋白质已在具有不同成功水平的植物中表达。妨碍了植物制造的重组蛋白质经济生产的两个主要挑战包括不足的积累水平和缺乏有效的纯化方法。为了解决这些限制,最近已经开发了几种融合蛋白策略,以显着增强植物制造的重组蛋白的产量,同时辅助随后的纯化。类似弹性蛋白的多肽是由重复的五肽'VPGXG'序列组成的热响应性生物聚合物,该序列对于重组蛋白质的纯化是有价值的。疏水蛋白是能够改变其各自的融合伙伴的疏水性的小真菌蛋白,从而能够通过基于表面活性剂的水性两相体系纯化。 Zera,玉米种子储存蛋白-ZEIN的域,可以诱导蛋白质储存体的形成,从而利用基于密度的分离方法促进熔融蛋白的回收。还显示了这三种新的蛋白质融合系统,以增强一系列不同重组蛋白的积累,同时同时诱导蛋白质的形成。将这些融合蛋白的包装填充到蛋白质体中可以从正常的生理周转中排除重组蛋白。此外,这些系统允许重组蛋白的快速,简单且廉价的非稀释性纯化,其可以扩大到工业水平的蛋白质产生。本综述将专注于这些人工储存细胞器,它们的生物发生及其对植物中重组蛋白的产生的相似性和差异及其随后的纯化。

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