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用于抗生素生产细菌链霉菌的天然和合成四环素诱导型启动子。

Natural and synthetic tetracycline-inducible promoters for use in the antibiotic-producing bacteria Streptomyces.

作者信息

Rodríguez-García Antonio, Combes Patricia, Pérez-Redondo Rosario, Smith Matthew C A, Smith Margaret C M

机构信息

Institute of Genetics, University of Nottingham, Queens Medical Centre Nottingham NG7 2UH, UK.

出版信息

Nucleic Acids Res. 2005 May 25;33(9):e87. doi: 10.1093/nar/gni086.

Abstract

Bacteria in the genus Streptomyces are major producers of antibiotics and other pharmacologically active compounds. Genetic and physiological manipulations of these bacteria are important for new drug discovery and production development. An essential part of any 'genetic toolkit' is the availability of regulatable promoters. We have adapted the tetracycline (Tc) repressor/operator (TetR/tetO) regulatable system from transposon Tn10 for use in Streptomyces. The synthetic Tc controllable promoter (tcp), tcp830, was active in a wide range of Streptomyces species, and varying levels of induction were observed after the addition of 1-100 ng/ml of anhydrotetracycline (aTc). Streptomyces coelicolor contained an innate Tc-controllable promoter regulated by a TetR homologue (SCO0253). Both natural and synthetic promoters were active and inducible throughout growth. Using the luxAB genes expressing luciferase as a reporter system, we showed that induction factors of up to 270 could be obtained for tcp830. The effect of inducers on the growth of S.coelicolor was determined; addition of aTc at concentrations where induction is optimal, i.e. 0.1-1 microg/ml, ranged from no effect on growth rate to a small increase in the lag period compared with cultures with no inducer.

摘要

链霉菌属细菌是抗生素和其他药理活性化合物的主要生产者。对这些细菌进行基因和生理操作对于新药发现和生产开发很重要。任何“基因工具包”的一个重要部分是可调控启动子的可用性。我们已将来自转座子Tn10的四环素(Tc)阻遏物/操纵子(TetR/tetO)调控系统进行改造,用于链霉菌。合成的Tc可控启动子(tcp),即tcp830,在多种链霉菌物种中具有活性,添加1-100 ng/ml脱水四环素(aTc)后可观察到不同程度的诱导。天蓝色链霉菌含有一个由TetR同源物(SCO0253)调控的固有Tc可控启动子。天然和合成启动子在整个生长过程中均具有活性且可诱导。使用表达荧光素酶的luxAB基因作为报告系统,我们表明tcp830的诱导因子可达270。测定了诱导剂对天蓝色链霉菌生长的影响;在诱导最佳浓度(即0.1-1μg/ml)添加aTc,与未添加诱导剂的培养物相比,对生长速率无影响至对数期略有增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bc/1140374/d004dc96710a/gni086f1.jpg

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