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A facile and efficient method to achieve LacZ overproduction by the expression vector carrying the thermoregulated promoter and plasmid copy number

机译:通过携带温度调节启动子和质粒拷贝数的表达载体实现LacZ过生产的简便有效方法

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摘要

On the basis of the runaway-replication vector, an expression plasmid was developed to achieve tight regulation as well as high-level expression of cloned genes by thermal control of the promoter together with the plasmid copy number. To demonstrate the feasibility of this approach, the lacZ gene was fused with the heat-inducible promoter on the vector, and the result showed that protein production levels in the Escherichia coli strain harboring the recombinant plasmid could be varied in response to various degrees of heat shock. The maximal soluble LacZ ranging between 45 000 and 50 000 Miller units was obtained as the recombinant strain received a 30 --> 40 degreesC stepwise upshift, and it accounted for a 450-fold amplification over an uninduced level. Further analyses by SDS-PAGE indicated the maximal protein production (including soluble and insoluble forms) in the bacteria reaching approximately 30% total cell protein. In addition, two approaches were demonstrated to be very useful in enhancing the total soluble LacZ production on a fermenter scale. One was to shuttle the culture between two fermenters connected in series and set at different temperatures. The other resorted to the use of two-step temperature alteration in a batch fermenter, namely, raising the temperature to 40 degreesC for a certain period of time followed by reducing the temperature to 37 degreesC. Overall, it illustrates the remarkable features of the expression system with stringent regulation, high-level production capacity, facile induction, and high stability, and the usefulness of this system for recombinant protein productions is promising.
机译:在失控复制载体的基础上,开发了一种表达质粒,通过对启动子的热控制以及质粒的拷贝数,实现了克隆基因的严格调控和高水平表达。为了证明这种方法的可行性,将lacZ基因与载体上的热诱导型启动子融合,结果表明,带有重组质粒的大肠杆菌菌株中的蛋白质生产水平可能会因不同的加热程度而发生变化。休克。当重组菌株接受30-> 40°C逐步上移时,获得的最大可溶性LacZ在45 000至50 000 Miller单位之间,并且在未诱导水平上占450倍的扩增。通过SDS-PAGE进行的进一步分析表明,细菌中的最大蛋白质产量(包括可溶性和不可溶形式)达到了约30%的总细胞蛋白质。此外,已证明两种方法在发酵罐规模上提高总可溶性LacZ产量非常有用。一种是将培养物在两个串联连接并设置在不同温度的发酵罐之间穿梭。另一种方法是在分批发酵罐中使用两步温度变化,即在一定时间段内将温度升高到40摄氏度,然后将温度降低到37摄氏度。总的来说,它说明了表达系统具有严格的调控,高水平的生产能力,容易的诱导和高稳定性的显着特征,并且该系统对重组蛋白生产的有用性是有前途的。

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