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首页> 外文期刊>Microbial Cell Factories >Development of a silicon limitation inducible expression system for recombinant protein production in the centric diatoms Thalassiosira pseudonana and Cyclotella cryptica
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Development of a silicon limitation inducible expression system for recombinant protein production in the centric diatoms Thalassiosira pseudonana and Cyclotella cryptica

机译:硅限制诱导型表达系统的开发,该系统用于在中心硅藻拟藻和假单胞菌中产生重组蛋白

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Background An inducible promoter for recombinant protein expression provides substantial benefits because under induction conditions cellular energy and metabolic capability can be directed into protein synthesis. The most widely used inducible promoter for diatoms is for nitrate reductase, however, nitrogen metabolism is tied into diverse aspects of cellular function, and the induction response is not necessarily robust. Silicon limitation offers a means to eliminate energy and metabolic flux into cell division processes, with little other detrimental effect on cellular function, and a protein expression system that works under those conditions could be advantageous. Results In this study, we evaluate a number of promoters for recombinant protein expression induced by silicon limitation and repressed by the presence of silicon in the diatoms Thalassiosira pseudonana and Cyclotella cryptica . In addition to silicon limitation, we describe additional strategies to elevate recombinant protein expression level, including inclusion of the 5′ fragment of the coding region of the native gene and reducing carbon flow into ancillary processes of pigment synthesis and formation of photosynthetic storage products. We achieved yields of eGFP to 1.8% of total soluble protein in C. cryptica , which is about 3.6-fold higher than that obtained with chloroplast expression and ninefold higher than nuclear expression in another well-established algal system. Conclusions Our studies demonstrate that the combination of inducible promoter and other strategies can result in robust expression of recombinant protein in a nuclear-based expression system in diatoms under silicon limited conditions, separating the protein expression regime from growth processes and improving overall recombinant protein yields.
机译:背景技术用于重组蛋白表达的诱导型启动子提供了实质性的好处,因为在诱导条件下,细胞能量和代谢能力可以被引导到蛋白合成中。硅藻中使用最广泛的诱导型启动子是硝酸还原酶,但是,氮代谢与细胞功能的各个方面有关,诱导反应不一定很牢固。硅限制提供了一种消除能量和代谢通量进入细胞分裂过程的方法,而对细胞功能几乎没有其他有害影响,在这些条件下起作用的蛋白质表达系统可能是有利的。结果在这项研究中,我们评估了许多启动子,用于重组蛋白表达,这些重组蛋白受硅限制诱导并被硅藻Thalassiosira pseudonana和Cyclotella cryptica中存在的硅抑制。除了硅的局限性,我们还描述了提高重组蛋白表达水平的其他策略,包括将天然基因编码区的5'片段包括在内,并减少碳流到色素合成和光合存储产物形成的辅助过程中。我们在隐孢子虫中的总可溶性蛋白含量达到1.8%时,eGFP的产量比叶绿体表达高约3.6倍,比另一个成熟的藻类系统中核表达高约9倍。结论我们的研究表明,可诱导启动子与其他策略的组合可在硅有限的条件下在硅藻的核基表达系统中稳定表达重组蛋白,从而将蛋白表达机制与生长过程分开,并提高整体重组蛋白产量。

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