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Designing a new generation of expression toolkits for engineering of green microalgae; robust production of human interleukin-2

机译:设计新一代Expression Toolkits,用于绿色微藻工程;人类白细胞介素-2的鲁棒生产

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Introduction: Attributable to some critical features especially the similarity of the protein synthesis machinery between humans and microalgae, these microorganisms can be utilized for the expression of many recombinant proteins. However, low and unstable gene expression levels prevent the further development of microalgae biotechnology towards protein production. Methods: Here, we designed a novel "Gained Agrobacterium-2A plasmid for microalgae expression" (named GAME plasmid) for the production of the human interleukin-2 using three model microalgae, including Chlamydomonas reinhardtii, Chlorella vulgaris, and Dunaliella salina. The GAME plasmid harbors a native chimeric hsp70/Int-1/rbcS2 promoter, the microalgae specific Kozak sequence, a novel hybrid 2A peptide, and Int-1 and Int-3 of the rbcS2 gene in its expression cassette. Results: The obtained data confirmed that the GAME plasmid can transform the microalgae with high transformation frequency. Molecular and proteomic analyses revealed the stable and robust production of the hIL-2 by the GAME plasmid in the microalgae. According to the densimetric analysis, the microalgae can accumulate the produced protein about 0.94% of the total soluble protein content. The ELISA data confirmed that the produced hIL-2 possesses the same conformation pattern with the acceptable biological activity found naturally in humans. Conclusion: Most therapeutic proteins need post-translational modifications for their correct conformation, biological function, and half-life. Accordingly, microalgae could be considered as a cost-effective and more powerful platform for the production of a wide range of recombinant proteins such as antibodies, enzymes, hormones, and vaccines.
机译:介绍:归因于某种关键特征,特别是人类和微藻之间蛋白质合成机械的相似性,这些微生物可用于表达许多重组蛋白。然而,低和不稳定的基因表达水平可防止微藻生物技术进一步发展蛋白质生产。方法:在此,我们设计了一种新颖的“获得的农杆菌-2a质粒,用于微藻表达”(命名的游戏质粒),用于使用三种模型微藻制成人的白细胞介素-2,包括衣原体中毒素,包括衣原体芦荟素,小球藻和Dunaliella Salina。游戏质粒镶嵌着天然嵌合HSP70 / int-1 / RBCS2启动子,微血脂特异性Kozak序列,新的杂交2a肽,其表达盒中的RBCS2基因的嵌段和int-3和int-3。结果:所获得的数据证实,游戏质粒可以以高转化频率转化微藻。分子和蛋白质组学分析揭示了在微藻中的游戏质粒的HIL-2的稳定和稳健的生产。根据致密分析,微藻可以累积产生的蛋白质的总可溶性蛋白质含量的0.94%。 ELISA数据证实,所产生的HIL-2具有与人类天然存在的可接受的生物活性相同的构象模式。结论:大多数治疗性蛋白质需要翻译后修饰,对其正确构象,生物功能和半衰期。因此,微藻可以被认为是生产各种重组蛋白质的成本效益和更强大的平台,例如抗体,酶,激素和疫苗。

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