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Mutation of luxS of Streptococcus pneumoniae Affects Virulence in a Mouse Model

机译:肺炎链球菌luxS突变影响小鼠模型中的毒力。

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摘要

The LuxS protein is required for the biosynthesis of the type 2 autoinducer (AI-2), which is involved in quorum sensing in a wide range of bacterial species. We have determined the effects of a defined luxS mutation on the virulence of Streptococcus pneumoniae. Although the luxS mutant displayed reduced virulence relative to its wild-type parent, the type 2 strain D39, it was by no means avirulent in a mouse model. After intranasal administration, the luxS mutant was able to colonize the nasopharynx of the mouse as efficiently as the wild type. However, it was less able to spread from the nasopharynx to the lungs or the blood. Intraperitoneal coadministration studies indicated that the luxS mutant was less fit and was readily outcompeted by wild-type D39. However, when administered on its own by this route, the mutant was able to proliferate and cause fatal systemic disease, albeit at a lower rate than the wild type. Western blot analysis of whole-cell lysates of the mutant and its parent did not reveal any differences in the levels of several well-characterized virulence proteins. However, analysis of Coomassie blue-stained protein profiles after separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed that mutation of luxS had pleiotropic effects on protein expression in all cellular compartments. This is consistent with the product of luxS having a regulatory role in S. pneumoniae. This is the first report of a direct role for luxS (and by inference, AI-2) in the virulence of a gram-positive pathogen. However, the fact that mutagenesis of luxS does not completely attenuate S. pneumoniae has implications for the possible use of AI-2 antagonists for treatment of pneumococcal infections.
机译:LuxS蛋白是2型自动诱导剂(AI-2)的生物合成所必需的,AI-2参与多种细菌种类的群体感应。我们已经确定了确定的luxS突变对肺炎链球菌毒力的影响。尽管luxS突变体相对于其野生型亲本2型菌株D39表现出降低的毒力,但在小鼠模型中绝非无毒力。鼻内给药后,luxS突变体能够像野生型一样有效地定居小鼠的鼻咽。但是,它从鼻咽传播到肺或血液的能力较弱。腹膜内共同给药研究表明,luxS突变体不太适合,很容易被野生型D39竞争。然而,当通过这种途径单独给药时,该突变体能够增殖并引起致命的系统性疾病,尽管其发生率低于野生型。突变体及其亲本的全细胞裂解物的蛋白质印迹分析未发现几种充分表征的毒力蛋白水平的任何差异。然而,十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分离后考马斯蓝染色的蛋白质谱分析表明,luxS突变对所有细胞区室的蛋白质表达均具有多效性。这与在肺炎链球菌中具有调节作用的luxS产物一致。这是关于luxS(以及据推断为AI-2)在革兰氏阳性病原体毒力中直接作用的首次报道。但是,luxS的诱变不能完全减弱肺炎链球菌的事实,暗示了AI-2拮抗剂可能用于治疗肺炎球菌感染。

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