Herai Sachio, Hashimoto Yoshiteru, Higashibata Hiroki, Maseda Hideaki, Ikeda Haruo, Omura Satoshi, Kobayashi Michihiko
Institute of Applied Biochemistry and Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
Proc Natl Acad Sci U S A. 2004 Sep 28;101(39):14031-5. doi: 10.1073/pnas.0406058101. Epub 2004 Sep 17.
Streptomycetes produce useful enzymes and a wide variety of secondary metabolites with potent biological activities (e.g., antibiotics, immunosuppressors, pesticides, etc.). Despite their importance in the pharmaceutical and agrochemical fields, there have been no reports for practical expression systems in streptomycetes. Here, we developed a "P(nitA)-NitR" system for regulatory gene expression in streptomycetes based on the expression mechanism of Rhodococcus rhodochrous J1 nitrilase, which is highly induced by an inexpensive and safe inducer, epsilon-caprolactam. Heterologous protein expression experiments demonstrated that the system allowed suppressed basal expression and hyper-inducible expression, yielding target protein levels of as high as approximately 40% of all soluble protein. Furthermore, the system functioned in important streptomycete strains. Thus, the P(nitA)-NitR system should be a powerful tool for improving the productivity of various useful products in streptomycetes.
链霉菌可产生有用的酶以及具有强大生物活性的多种次级代谢产物(例如抗生素、免疫抑制剂、杀虫剂等)。尽管它们在制药和农用化学品领域具有重要意义,但尚未有关于链霉菌实用表达系统的报道。在此,我们基于红球菌J1腈水解酶的表达机制,开发了一种用于链霉菌中调控基因表达的“P(nitA)-NitR”系统,该酶可被一种廉价且安全的诱导剂ε-己内酰胺高度诱导。异源蛋白表达实验表明,该系统可实现基础表达的抑制和超诱导表达,目标蛋白水平高达所有可溶性蛋白的约40%。此外,该系统在重要的链霉菌菌株中也能发挥作用。因此,P(nitA)-NitR系统应该是提高链霉菌中各种有用产物产量的有力工具。