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构建并应用 luxABCDE 报告系统实时监测粪肠球菌基因表达和生长。

Construction and application of a luxABCDE reporter system for real-time monitoring of Enterococcus faecalis gene expression and growth.

机构信息

Department of Chemistry, Biotechnology and Food Science, Laboratory of Microbial Gene Technology and Food Microbiology, Norwegian University of Life Sciences, Ås, Norway.

出版信息

Appl Environ Microbiol. 2012 Oct;78(19):7003-11. doi: 10.1128/AEM.02018-12. Epub 2012 Jul 27.

Abstract

The present work describes the construction of a novel molecular tool for luciferase-based bioluminescence (BL) tagging of Enterococcus faecalis. To this end, a vector (pSL101) and its derivatives conferring a genetically encoded bioluminescent phenotype on all tested strains of E. faecalis were constructed. pSL101 harbors the luxABCDE operon from pPL2lux and the pREG696 broad-host-range replicon and axe-txe toxin-antitoxin cassette, providing segregational stability for long-term plasmid persistence in the absence of antibiotic selection. The bioluminescent signals obtained from three highly expressed promoters correlated linearly (R(2) > 0.98) with the viable-cell count. We employed lux-tagged E. faecalis strains to monitor growth in real time in milk and urine in vitro. Furthermore, bioluminescence imaging (BLI) was used to visualize the magnitude of the bacterial burden during infection in the Galleria mellonella model system. To our knowledge, pSL101 is the first substrate addition-independent reporter system developed for BLI of E. faecalis and an efficient tool for spatiotemporal tracking of bacterial growth and quantitative determination of promoter activity in real time, noninvasively, in infection model systems.

摘要

本研究构建了一种新型分子工具,用于基于荧光素酶的粪肠球菌生物发光(BL)标记。为此,构建了一个携带 luxABCDE 操纵子的载体(pSL101)及其衍生载体,可使所有粪肠球菌测试菌株呈现遗传编码的生物发光表型。pSL101 含有 pPL2lux 的 luxABCDE 操纵子和 pREG696 广泛宿主复制子以及 axe-txe 毒素-抗毒素盒,为在没有抗生素选择的情况下长期质粒持续存在提供了分离稳定性。从三个高表达启动子获得的生物发光信号与活菌计数呈线性相关(R(2) > 0.98)。我们使用 lux 标记的粪肠球菌菌株在体外实时监测牛奶和尿液中的生长情况。此外,生物发光成像(BLI)用于可视化在金斑蝶模型系统中感染期间细菌负荷的大小。据我们所知,pSL101 是第一个为粪肠球菌的 BLI 开发的底物添加独立报告系统,也是在感染模型系统中实时、非侵入性地对细菌生长进行时空跟踪和定量测定启动子活性的有效工具。

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