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Involvement of NADH Oxidase in Competition and Endocarditis Virulence in Streptococcus sanguinis

机译:NADH氧化酶参与血链球菌的竞争和心内膜炎的致病性

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Here, we report for the first time that the Streptococcus sanguinis nox gene encoding NADH oxidase is involved in both competition with Streptococcus mutans and virulence for infective endocarditis. An S. sanguinis nox mutant was found to fail to inhibit the growth of Streptococcus mutans under microaerobic conditions. In the presence of oxygen, the recombinant Nox protein of S. sanguinis could reduce oxygen to water and oxidize NADH to NAD+. The oxidation of NADH to NAD+ was diminished in the nox mutant. The nox mutant exhibited decreased levels of extracellular H2O2; however, the intracellular level of H2O2 in the mutant was increased. Furthermore, the virulence of the nox mutant was attenuated in a rabbit endocarditis model. The nox mutant also was shown to be more sensitive to blood killing, oxidative and acid stresses, and reduced growth in serum. Thus, NADH oxidase contributes to multiple phenotypes related to competitiveness in the oral cavity and systemic virulence.
机译:在这里,我们首次报道,编码NADH氧化酶的血链球菌 nox 基因参与了与变形链球菌的竞争和感染性心内膜炎的毒力。发现在有氧条件下,血红链球菌 nox 突变体不能抑制变形链球菌的生长。在有氧条件下,血红链球菌的重组Nox蛋白可以将氧气还原为水,并将NADH氧化为NAD + 。在 nox 突变体中,NADH氧化为NAD + 的作用减弱。 nox 突变体的细胞外H 2 O 2 水平降低;然而,该突变体中H 2 O 2 的细胞内水平升高。此外,在兔子心内膜炎模型中, nox 突变体的毒力减弱。还显示了 nox 突变体对血液杀灭,氧化和酸胁迫以及血清生长降低更为敏感。因此,NADH氧化酶促成与口腔中的竞争性和全身毒力有关的多种表型。

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