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首页> 外文期刊>Molecular Microbiology >The BosR regulatory protein of Borrelia burgdorferi interfaces with the RpoS regulatory pathway and modulates both the oxidative stress response and pathogenic properties of the Lyme disease spirochete.
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The BosR regulatory protein of Borrelia burgdorferi interfaces with the RpoS regulatory pathway and modulates both the oxidative stress response and pathogenic properties of the Lyme disease spirochete.

机译:Bosria Burgdorferi的Bosr调节蛋白与RPOS调节途径接口,并调节螺旋测量莱姆病的氧化应激反应和致病性能。

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摘要

Summary Borrelia burgdorferi, the Lyme disease spirochete, adapts as it moves between the arthropod and mammalian hosts that it infects. We hypothesize that BosR serves as a global regulator in B. burgdorferi to modulate the oxidative stress response and adapt to mammalian hosts. To test this hypothesis, a bosR mutant in a low-passage B. burgdorferi isolate was constructed. The resulting bosR::kan(R) strain was altered when grown microaerobically or anaerobically suggesting that BosR is required for optimal replication under both growth conditions. The absence of BosR increased the sensitivity of B. burgdorferi to hydrogen peroxide and reduced the synthesis of Cdr and NapA, proteins important for cellular redox balance and the oxidative stress response, respectively, suggesting an important role for BosR in borrelial oxidative homeostasis. For the bosR mutant, the production of RpoS was abrogated and resulted in the loss of OspC and DbpA, suggesting that BosR interfaces with the Rrp2-RpoN-RpoS regulatory cascade. Consistent with the linkage to RpoS, cells lacking bosR were non-infectious in the mouse model of infection. These results indicate that BosR is required for resistance to oxidative stressors and provides a regulatory response that is necessary for B. burgdorferi pathogenesis.
机译:摘要Borrelia Burgdorferi,Lyme疾病Spirochete,随着它在患有它感染的节肢动物和哺乳动物宿主之间移动。我们假设BOSR作为B.Burgdorferi的全球调节剂,以调节氧化应激反应并适应哺乳动物宿主。为了测试这一假设,构建了低通道B.Burgdorferi分离物中的Bosr突变体。当微血管或厌氧上的生长时,所得到的Bosr :: Kan(R)菌株改变,表明Bosr在两种生长条件下需要最佳复制。没有Bosr的缺乏增加了B.Burgdorferi对过氧化氢的敏感性,并减少了CDR和NaPA的合成,蛋白质分别对细胞氧化还原平衡和氧化应激反应很重要,表明Bosr在庇护氧化稳态中的重要作用。对于Bosr突变体,RPO的产生废除并导致OSPC和DBPA的丧失,表明BOSR与RRP2-RPON-RPOS调节级联的界面。与对RPO的连杆一致,缺乏BOSR的细胞在感染小鼠模型中是非传染性的。这些结果表明Bosr需要抗氧化胁迫源,并提供B.Burgdorferi发病机制所需的调节响应。

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