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Production of recombinant proteins in E. coli by the heat inducible expression system based on the phage lambda pL and/or pR promoters

机译:通过基于噬菌体λpL和/或pR启动子的热诱导表达系统在大肠杆菌中生产重组蛋白

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摘要

The temperature inducible expression system, based on the pL and/or pR phage lambda promoters regulated by the thermolabile cI857 repressor has been widely use to produce recombinant proteins in prokariotic cells. In this expression system, induction of heterologous protein is achieved by increasing the culture temperature, generally above 37°C. Concomitant to the overexpression of heterologous protein, the increase in temperature also causes a variety of complex stress responses. Many studies have reported the use of such temperature inducible expression system, however only few discuss the simultaneous stress effects caused by recombinant protein production and the up-shift in temperature. Understanding the integral effect of such responses should be useful to develop improved strategies for high yield protein production and recovery. Here, we describe the current status of the heat inducible expression system based on the pL and/or pR λ phage promoters, focusing on recent developments on expression vehicles, the stress responses at the molecular and physiological level that occur after heat induction, and bioprocessing factors that affect protein overexpression, including culture operation variables and induction strategies.
机译:基于由不耐热cI857阻遏物调节的pL和/或pR噬菌体λ启动子的温度诱导表达系统已被广泛用于在原核细胞中产生重组蛋白。在该表达系统中,通过提高培养温度(通常高于37°C)来实现异源蛋白的诱导。伴随异源蛋白的过表达,温度的升高还引起多种复杂的应激反应。许多研究已经报道了这种温度诱导型表达系统的使用,但是只有很少的讨论讨论了重组蛋白质生产和温度升高引起的同时应激效应。了解此类反应的整体效果对于开发改进的高产量蛋白质生产和回收策略应有所帮助。在这里,我们描述了基于pL和/或pRλ噬菌体启动子的热诱导表达系统的当前状态,重点介绍了表达载体的最新进展,热诱导后在分子和生理水平发生的应激反应以及生物加工影响蛋白质过表达的因素,包括培养操作变量和诱导策略。

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