首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Polymicrobial Interactions Stimulate Resistance To Host Innate Immunity Through Metabolite Perception
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Polymicrobial Interactions Stimulate Resistance To Host Innate Immunity Through Metabolite Perception

机译:微生物相互作用通过代谢物感知刺激抵抗宿主固有免疫力。

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Bacteria in the human oral cavity often grow in an attached multispecies biofilm community. Members of this community display defined interactions that have an impact on the physiology of the individual and the group. Here, we show that during coculture growth with streptococci, the oral pathogen Aggregatibacter ac-tinomycetemcomitans displays enhanced resistance to killing by host innate immunity. The mechanism of resistance involves sensing of the streptococcal metabolite hydrogen peroxide by A. actinomycetemcomitans, which stimulates a genetic program resulting in enhanced expression of the complement resistance protein ApiA. The oxidative stress response regulator OxyR mediates induction of apiA transcription, and this induction is required for coculture resistance to killing by human serum. These findings provide evidence that interaction between community members mediates prokaryotic resistance to host innate immunity and reinforce the need to understand how polymicrobial growth affects interaction with the host immune system.
机译:人口腔中的细菌通常在附着的多物种生物膜群落中生长。该社区的成员展示明确定义的互动方式,这些互动方式会影响个人和群体的生理机能。在这里,我们显示在与链球菌共培养期间,口腔病原体ac-tinomycetemcomitans口腔病原体表现出增强的抗宿主先天免疫力的能力。耐药机制涉及放线菌对链球菌代谢产物过氧化氢的感应,这刺激了遗传程序,导致补体耐药蛋白ApiA的表达增强。氧化应激反应调节剂OxyR介导apiA转录的诱导,而这种诱导是共培养抗人类血清杀伤力所必需的。这些发现提供了证据,表明社区成员之间的相互作用介导了对宿主固有免疫力的原核抗性,并增强了了解微生物生长如何影响与宿主免疫系统相互作用的需求。

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