关键词: Baeyer-Villiger monooxygenase CHMO Escherichia coli High-throughput Library growth Microtiter plates Reproducible protein expression Screening

Mesh : Acinetobacter / enzymology genetics Bacterial Proteins / genetics metabolism Batch Cell Culture Techniques / instrumentation Escherichia coli / genetics growth & development Gene Expression Gene Library Oxygenases / genetics metabolism Protein Engineering Recombinant Proteins / genetics metabolism

来  源:   DOI:10.1007/978-1-4939-7366-8_8

Abstract:
Escherichia coli (E. coli) as heterologous host enables the recombinant expression of the desired protein in high amounts. Nevertheless, the expression in such a host, especially by utilizing a strong induction system, can result in insoluble and/or inactive protein fractions (inclusion bodies). Furthermore, the expression of different enzyme variants often leads to a diverse growth behavior of the E. coli clones resulting in the identification of false-positives when screening a mutant library. Thus, we developed a protocol for an optimal and reproducible protein expression in microtiter plates showcased for the expression of the cyclohexanone monooxygenase (CHMO) from Acinetobacter sp. NCIMB 9871. By emerging this protocol, several parameters concerning the expression medium, the cultivation temperatures, shaking conditions as well as time and induction periods for CHMO were investigated. We employed a microtiter plate shaker with humidity and temperature control (Cytomat™) (integrated in a robotic platform) to obtain an even growth and expression over the plates. Our optimized protocol provides a comprehensive overview of the key factors influencing a reproducible protein expression and this should serve as basis for the adaptation to other enzyme classes.
摘要:
暂无翻译
公众号