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regX3对结核分枝杆菌毒力的senX3非依赖性贡献。

senX3-independent contribution of regX3 to Mycobacterium tuberculosis virulence.

作者信息

Rifat Dalin, Belchis Deborah A, Karakousis Petros C

出版信息

BMC Microbiol. 2014 Oct 25;14:265. doi: 10.1186/s12866-014-0265-8.

Abstract

BACKGROUND

Mycobacterium tuberculosis (Mtb) must adapt to various stress conditions during host infection. The two-component regulatory system (2CRS) SenX3-RegX3 is required for Mtb virulence. We showed recently that the senX3-regX3 intergenic region contains promoter activity, driving senX3-independent regX3 expression. In the current study, we tested the hypothesis that RegX3 has a SenX3-independent role in Mtb virulence. The gene expression patterns, growth, and survival of mutants containing transposon insertions in senX3 (senX3::Tn) and regX3 (regX3::Tn) were compared to those of their respective complemented strains and the isogenic wild-type parent strain during axenic growth in nutrient-rich broth, phosphate depletion, nutrient starvation, and in the lungs of BALB/c mice.

RESULTS

regX3 expression was reduced in senX3::Tn during phosphate depletion and nutrient starvation, and expression of the phosphate-specific transport gene pstC2 was reduced similarly in senX3::Tn and regX3::Tn during phosphate depletion. Although senX3 and regX3 were each dispensable for Mtb growth in nutrient-rich broth, disruption of senX3 or regX3 caused a similar growth defect during phosphate depletion. Interestingly, senX3::Tn, in which monocistronic regX3 expression is preserved, showed significantly higher survival relative to regX3::Tn after 7 days of nutrient starvation (p <0.01), and in mouse lungs at Day 31 (p < 0.01), Day 62 (p < 0.01), and Day 124 (p = 0.05) after aerosol infection.

CONCLUSION

Our data demonstrate the specificity of the senX3-regX3 2CRS for sensing and responding to low ambient phosphate, but also raise the possibility that RegX3 may function independently of its cognate sensor histidine kinase.

摘要

背景

结核分枝杆菌(Mtb)在宿主感染期间必须适应各种应激条件。双组分调节系统(2CRS)SenX3-RegX3是Mtb毒力所必需的。我们最近发现senX3-regX3基因间区域具有启动子活性,可驱动不依赖SenX3的RegX3表达。在本研究中,我们检验了RegX3在Mtb毒力中具有不依赖SenX3的作用这一假设。在富含营养的肉汤中进行无菌生长、磷酸盐耗竭、营养饥饿以及在BALB/c小鼠肺部感染期间,比较了在senX3(senX3::Tn)和regX3(regX3::Tn)中含有转座子插入的突变体与其各自互补菌株和同基因野生型亲本菌株的基因表达模式、生长和存活情况。

结果

在磷酸盐耗竭和营养饥饿期间,senX3::Tn中的regX3表达降低,并且在磷酸盐耗竭期间,senX3::Tn和regX3::Tn中磷酸盐特异性转运基因pstC2的表达同样降低。虽然senX3和regX3对于Mtb在富含营养的肉汤中的生长均非必需,但在磷酸盐耗竭期间,senX3或regX3的破坏会导致类似的生长缺陷。有趣的是,在营养饥饿7天后(p<0.01)以及气溶胶感染后第31天(p<0.01)、第62天(p<0.01)和第124天(p = 0.05),单顺反子regX3表达得以保留的senX3::Tn相对于regX3::Tn显示出显著更高的存活率。

结论

我们的数据证明了senX3-regX3 2CRS在感知和响应低环境磷酸盐方面的特异性,但也提出了RegX3可能独立于其同源传感器组氨酸激酶发挥作用的可能性。

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