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首页> 外文期刊>Applied and Environmental Microbiology >Development of a Thermally Regulated Broad-Spectrum Promoter System for Use in Pathogenic Gram-Positive Species
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Development of a Thermally Regulated Broad-Spectrum Promoter System for Use in Pathogenic Gram-Positive Species

机译:开发用于病原革兰氏阳性菌种的热调节广谱启动子系统

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摘要

Selectively regulating gene expression is an essential molecular tool that is lacking for many pathogenic gram-positive bacteria. In this report, we describe the evaluation of a series of promoters regulated by the bacteriophage P1 temperature-sensitive C1 repressor in Enterococcus faecium, Enterococcus faecalis, and Staphylococcus aureus. Using the lacZ gene to monitor gene expression, we examined the strength, basal expression, and induced expression of synthetic promoters carrying C1 operator sites. The promoters exhibited extremely low basal expression and, under inducing conditions, gave high levels of expression (100- to 1,000-fold induction). We demonstrate that the promoter system could be modulated by temperature and showed rapid induction and that the mechanism of regulation occurred at the level of transcription. Controlled expression with the same constructs was also demonstrated in the gram-negative bacterium Escherichia coli. However, low basal expression and the ability to achieve derepression were dependent on both the number of mismatches in the C1 operator sites and the promoter driving c1 expression. Since the promoters were designed to contain conserved promoter elements from gram-positive species and were constructed in a broad-host-range plasmid, this system will provide a new opportunity for controlled gene expression in a variety of gram-positive bacteria.
机译:选择性调节基因表达是许多致病性革兰氏阳性细菌所缺乏的基本分子工具。在此报告中,我们描述了由粪肠球菌,粪肠球菌和金黄色葡萄球菌中的噬菌体P1温度敏感性C1阻遏物调控的一系列启动子的评估。使用lacZ基因监测基因表达,我们检查了带有C1操纵子位点的合成启动子的强度,基础表达和诱导表达。这些启动子表现出极低的基础表达,并且在诱导条件下,表达水平很高(诱导为100到1,000倍)。我们证明了启动子系统可以被温度调节并且显示出快速的诱导,并且调节机制发生在转录水平。在革兰氏阴性细菌大肠杆菌中也证明了用相同构建体进行的受控表达。但是,低的基础表达和实现抑制的能力取决于C1操纵子位点错配的数目和驱动c1表达的启动子。由于启动子被设计为包含来自革兰氏阳性菌种的保守启动子元件,并在宽宿主范围的质粒中构建,因此该系统将为在多种革兰氏阳性菌中控制基因表达提供新的机会。

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