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CpsR a GntR family regulator transcriptionally regulates capsular polysaccharide biosynthesis and governs bacterial virulence in Streptococcus pneumoniae

机译:GntR家族调节剂CpsR转录调节荚膜多糖的生物合成并控制肺炎链球菌的细菌毒性。

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摘要

Transcriptional regulation of capsule expression is critical for pneumococcal transition from carriage to infection, yet the underlying mechanism remains incompletely understood. Here, we describe the regulation of capsular polysaccharide, one of the most important pneumococcal virulence factor by a GntR family regulator, CpsR. Electrophoretic mobility-shift assays have shown the direct interaction between CpsR and the cps promoter (cpsp), and their interaction could be competitively interfered by glucose. DNase I footprinting assays localized the binding site to a region −146 to −114 base pairs relative to the transcriptional start site of the cps locus in S. pneumoniae D39. We found that CpsR negatively controlled the transcription of the cps locus and hence CPS production, which was confirmed by fine-tuning expression of CpsR in a ΔcpsR complemented strain. Increased expression of CpsR in complemented strain led to a decreased resistance to the whole-blood-mediated killing, suggesting a protective role for CpsR-cpsp interaction in the establishment of invasive infection. Finally, animal experiments showed that CpsR-cpsp interaction was necessary for both pneumococcal colonization and invasive infection. Taken together, our results provide a thorough insight into the regulation of capsule production mediated by CpsR and its important roles in pneumococcal pathogenesis.
机译:胶囊表达的转录调节对于肺炎球菌从携带到感染的转变至关重要,但其潜在机制仍不完全清楚。在这里,我们描述了GntR家族调节剂CpsR对荚膜多糖的调节,荚膜多糖是最重要的肺炎球菌毒力因子之一。电泳迁移率迁移分析表明,CpsR和cps启动子(cpsp)之间存在直接相互作用,葡萄糖可能竞争性地干扰了它们之间的相互作用。 DNase I足迹测定法将结合位点定位于相对于肺炎链球菌D39中cps基因座转录起始位点的-146至-114个碱基对的区域。我们发现,CpsR负调控cps基因座的转录,从而控制CPS的产生,这可以通过微调ΔcpsR互补菌株中CpsR的表达来证实。 CpsR在互补菌株中的表达增加导致对全血介导的杀伤的抵抗力降低,表明CpsR-cpsp相互作用在侵袭性感染建立中具有保护作用。最后,动物实验表明,CpsR-cpsp相互作用对于肺炎球菌定植和侵袭性感染都是必需的。两者合计,我们的结果提供了深入了解由CpsR介导的胶囊生产及其在肺炎球菌发病机理中的重要作用。

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