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一种改良的基于重组的体内表达技术样报告系统揭示了博德特氏菌属中 cyaA 基因的差异激活。

An improved recombination-based in vivo expression technology-like reporter system reveals differential cyaA gene activation in Bordetella species.

机构信息

Department of Microbiology and Immunology, University of North Carolina School of Medicine, Chapel Hill, North Carolina, USA.

出版信息

Infect Immun. 2013 Apr;81(4):1295-305. doi: 10.1128/IAI.01445-12. Epub 2013 Feb 4.

Abstract

Bordetella pertussis and Bordetella bronchiseptica rely on the global two-component regulatory system BvgAS to control expression of distinct phenotypic phases. In the Bvg(-) phase, expression of vrg genes, including those required for motility in B. bronchiseptica, is activated and genes encoding virulence factors are not expressed. Conversely, in the Bvg(+) phase, genes encoding virulence factors are highly expressed while genes necessary for motility are repressed. Although several genetic analyses have demonstrated the importance of the Bvg(+) phase during respiratory infection, Bvg-regulated gene activation in B. bronchiseptica has not been investigated in vivo. To address this, we developed a plasmid, pGFLIP, that encodes a sensitive Flp recombinase-based fluorescent reporter system able to document gene activation both in vitro and in vivo. Using pGFLIP, we demonstrated that cyaA, considered to be a "late" Bvg(+) phase gene, is activated substantially earlier in B. bronchiseptica than B. pertussis following a switch from Bvg(-) to Bvg(+) phase conditions. We show that the altered activation of cyaA is not due to differences in the cyaA promoter or in the bvgAS alleles of B. bronchiseptica compared to B. pertussis, but appears to be species specific. Finally, we used pGFLIP to show that flaA remains repressed during infection, confirming that B. bronchiseptica does not modulate to the Bvg(-) phase in vivo.

摘要

百日咳博德特氏菌和支气管败血波氏杆菌依赖全球双组分调节系统 BvgAS 来控制不同表型相的表达。在 Bvg(-)相中,vrg 基因的表达被激活,包括支气管败血波氏杆菌运动所必需的基因,而编码毒力因子的基因则不表达。相反,在 Bvg(+)相中,编码毒力因子的基因高度表达,而运动所必需的基因则受到抑制。尽管有几项遗传分析表明 Bvg(+)相在呼吸道感染期间的重要性,但在体内尚未研究过支气管败血波氏杆菌中 Bvg 调节的基因激活。为了解决这个问题,我们开发了一个质粒 pGFLIP,它编码了一种敏感的 Flp 重组酶基于荧光报告系统,能够在体外和体内记录基因的激活。使用 pGFLIP,我们证明了 cyaA,被认为是一个“晚期”Bvg(+)相基因,在从 Bvg(-)到 Bvg(+)相条件的转变后,在支气管败血波氏杆菌中的激活比百日咳博德特氏菌早得多。我们表明,cyaA 的激活改变不是由于 cyaA 启动子或支气管败血波氏杆菌与百日咳博德特氏菌相比的 bvgAS 等位基因的差异所致,而是似乎是物种特异性的。最后,我们使用 pGFLIP 表明 flaA 在感染期间仍受到抑制,这证实了支气管败血波氏杆菌在体内不会调节到 Bvg(-)相。

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