Bertrand K P, Postle K, Wray L V, Reznikoff W S
J Bacteriol. 1984 Jun;158(3):910-9. doi: 10.1128/jb.158.3.910-919.1984.
The construction and characterization of a promoter expression vector, lambda RS205 , is described. lambda RS205 can be used for the in vitro construction of transcriptional (operon) fusions to the lacZ gene of Escherichia coli K-12. The level of beta-galactosidase activity in lysogens of lambda RS205 fusion phages provides a quantitative measure of promoter function under single-copy conditions. The regulation of the Tn10 tetracycline resistance gene ( tetA ) and the Tn10 tet repressor gene (tetR) was examined by inserting DNA fragments that span the tetR- tetA promoter-operator region into lambda RS205 . Levels of beta-galactosidase in tetA -lacZ and tetR-lacZ fusion strains indicate that the tetA and tetR promoters are strong promoters; the tetA promoter is fourfold more active than the tetR promoter. Introduction of tetR+ plasmids into tetA -lacZ and tetR-lacZ fusion strains represses beta-galactosidase synthesis 15- to 60-fold and 6- to 15-fold, respectively. The concentration of tetracycline required to induce half-maximal beta-galactosidase synthesis in these tetR+ tet-lac strains depends on both the tetracycline resistance phenotype and the level of tetR repressor in the fusion strain. However, the induction of beta-galactosidase in isogenic tetA -lacZ and tetR-lacZ strains is coordinate. The data presented here support the current model of Tn10 tet gene organization and regulation and provide quantitative information about the regulation of tetA and tetR in vivo.
本文描述了一种启动子表达载体λRS205的构建及特性。λRS205可用于体外构建与大肠杆菌K-12的lacZ基因的转录(操纵子)融合体。λRS205融合噬菌体溶原菌中β-半乳糖苷酶活性水平提供了单拷贝条件下启动子功能的定量测量。通过将跨越tetR-tetA启动子-操纵区的DNA片段插入λRS205,研究了Tn10四环素抗性基因(tetA)和Tn10四环素阻遏基因(tetR)的调控。tetA-lacZ和tetR-lacZ融合菌株中β-半乳糖苷酶的水平表明tetA和tetR启动子是强启动子;tetA启动子的活性比tetR启动子高四倍。将tetR+质粒导入tetA-lacZ和tetR-lacZ融合菌株分别使β-半乳糖苷酶合成抑制15至60倍和6至15倍。在这些tetR+tet-lac菌株中诱导β-半乳糖苷酶合成达到最大活性一半所需的四环素浓度取决于融合菌株的四环素抗性表型和tetR阻遏物水平。然而,同源tetA-lacZ和tetR-lacZ菌株中β-半乳糖苷酶的诱导是协同的。本文提供的数据支持当前Tn10 tet基因组织和调控模型,并提供了体内tetA和tetR调控的定量信息。