Kim So-Yeon, Ayyadurai Niraikulam, Heo Mi-Ae, Park Sunghoon, Jeong Yong Joo, Lee Sun-Gu
Department of Chemical and Biochemical Engineering, and Institute for Environmental Technology and Industry, Pusan National University, Busan, Korea.
J Microbiol Biotechnol. 2009 Jan;19(1):72-7.
Here, we demonstrate that the overexpression of the GroELS chaperone system, which assists the folding of intracellular proteins and prevents aggregation of its biological targets, can enhance the thermotolerance of Escherichia coli strains and facilitate the production of recombinant protein under thermal stress. The overexpression of GroELS led to an about 2-fold higher growth rate of E. coli XL-1 blue than control at 45 degrees and induced the growth of the strain even at 50 degrees , although the growth was not sustained in the second-round culture. The effect of GroELS overexpression was also effective on other E. coli strains such as JM109, DH5alpha, and BL21. Finally, we have shown that coexpression of GroELS allows us to produce recombinant protein even at 50 degrees , a temperature at which the protein production based on E. coli is not efficient. This study indicates that the employment of the GroELS overexpression system can expand the range of environmental conditions for E. coli.
在此,我们证明了GroELS伴侣系统的过表达可增强大肠杆菌菌株的耐热性,并在热应激条件下促进重组蛋白的产生。GroELS伴侣系统可协助细胞内蛋白质折叠,并防止其生物学靶标聚集。GroELS的过表达使大肠杆菌XL-1 blue在45摄氏度时的生长速率比对照高出约2倍,甚至在50摄氏度时也能诱导该菌株生长,尽管在第二轮培养中生长未持续。GroELS过表达对其他大肠杆菌菌株如JM109、DH5α和BL21也有效果。最后,我们表明GroELS的共表达使我们即使在50摄氏度(基于大肠杆菌的蛋白质生产效率不高的温度)也能产生重组蛋白。这项研究表明,使用GroELS过表达系统可以扩大大肠杆菌的环境条件范围。