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High production of heterologous proteins in Escherichia coli using the thermo-regulated T7 expression system

机译:使用温度调节的T7表达系统在大肠杆菌中大量生产异源蛋白

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摘要

The exclusive use of isopropyl β-D-thiogalactopyranoside to activate the T7 promoter for protein production has limited the general use of the expression system. We have sought an alternative by constructing a recombinant Escherichia coli strain, BL21 (G2), to carry a chromosomal copy of T7 gene 1 fused to the λPL and λPR tandem promoter. As a result, the recombinant strain harboring the carbamoylase gene from Agrobacterium radiobacter NRRL B11291 was shown to display various levels of protein production in response to different degrees of heat shock. In particular, the system remained inactive at 30°C and exhibited high sensitivity to heat such that a detectable carbamoylase activity could be measured after exposure to 33°C. Moreover, heating in two steps – elevating the temperature from 30°C to 39°C and holding for a brief period, followed by reducing to 37°C – was found to be the most potent method for protein production in this case. Using this approach, the recombinant protein accounted for 20% of total protein content of the cell. These results reveal the advantages of this expression system: responsiveness to thermal modulation and high-level production capability. In an attempt to enhance the total protein yield, a fed-batch fermentation process was carried out to control the cell growth rate by adjusting the substrate inflow. By applying the two-step temperature change, a carbamoylase yield with enzyme activity corresponding to 14,256 units was obtained. This production yield is a 10-fold increase in comparison with that at the batch-fermentation scale and 2,000-fold higher than that achieved at the shake-flask scale. Overall, it illustrates the promise of the newly constructed T7 system based on heat inducibility for industrial scale production of recombinant proteins.
机译:异丙基β-D-硫代半乳糖吡喃糖苷仅用于激活T7启动子以生产蛋白质,这限制了表达系统的一般用途。我们通过构建重组大肠杆菌菌株BL21(G2)来寻找一种替代方法,以携带融合到λPL和λPR串联启动子的T7基因1的染色体拷贝。结果,显示出来自农杆菌放射细菌NRRL B11291的具有氨基甲酰酶基因的重组菌株响应于不同程度的热激显示出不同水平的蛋白质产生。尤其是,该系统在30°C时保持非活性,并表现出对热的高度敏感性,因此在暴露于33°C后可以测量可检测的氨基甲酰酶活性。此外,发现在这种情况下,分两步加热是将温度从30°C升高到39°C并保持一小段时间,然后降低到37°C是最有效的蛋白质生产方法。使用这种方法,重组蛋白占细胞总蛋白含量的20%。这些结果揭示了该表达系统的优势:对热调节的响应能力和高水平的生产能力。为了提高总蛋白产量,进行了分批补料发酵工艺,通过调节底物流入量来控制细胞生长速率。通过应用两步温度变化,获得了具有相当于14256个单位的酶活性的氨基甲酰酶收率。与分批发酵规模相比,该产量提高了10倍,比摇瓶规模达到了2,000倍。总体而言,它说明了基于热诱导性的新型T7系统在工业规模生产重组蛋白方面的前景。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2002年第4期|446-453|共8页
  • 作者单位

    Department of Chemical Engineering Feng Chia University P.O. Box 25–102 100 Wenhwa Road Taichung Taiwan;

    Widetex Biotech. Co. Taipei Taiwan;

    Department of Chemical Engineering Feng Chia University P.O. Box 25–102 100 Wenhwa Road Taichung Taiwan;

    Department of Chemical Engineering Feng Chia University P.O. Box 25–102 100 Wenhwa Road Taichung Taiwan;

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