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Streptococcus mutans NADH Oxidase Lies at the Intersection of Overlapping Regulons Controlled by Oxygen and NAD+ Levels

机译:变形链球菌NADH氧化酶位于由氧气和NAD +水平控制的重叠调节子的交点

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摘要

NADH oxidase (Nox, encoded by nox) is a flavin-containing enzyme used by the oral pathogen Streptococcus mutans to reduce diatomic oxygen to water while oxidizing NADH to NAD+. The critical nature of Nox is 2-fold: it serves to regenerate NAD+, a carbon cycle metabolite, and to reduce intracellular oxygen, preventing formation of destructive reactive oxygen species (ROS). As oxygen and NAD+ have been shown to modulate the activity of the global transcription factors Spx and Rex, respectively, Nox is potentially poised at a critical junction of two stress regulons. In this study, microarray data showed that either addition of oxygen or loss of nox resulted in altered expression of genes involved in energy metabolism and transport and the upregulation of genes encoding ROS-metabolizing enzymes. Loss of nox also resulted in upregulation of several genes encoding transcription factors and signaling molecules, including the redox-sensing regulator gene rex. Characterization of the nox promoter revealed that nox was regulated by oxygen, through SpxA, and by Rex. These data suggest a regulatory loop in which the roles of nox in reduction of oxygen and regeneration of NAD+ affect the activity levels of Spx and Rex, respectively, and their regulons, which control several genes, including nox, crucial to growth of S. mutans under conditions of oxidative stress.
机译:NADH氧化酶(Nox,由nox编码)是一种含有黄素的酶,被口腔病原体变形链球菌用来在将NADH氧化为NAD + 的同时将双原子氧还原为水。 Nox的关键性质是2倍:它可再生NAD + (一种碳循环代谢物)并减少细胞内的氧,从而防止破坏性活性氧(ROS)的形成。由于已证明氧气和NAD + 分别调节全局转录因子Spx和Rex的活性,因此Nox可能位于两个胁迫调节子的关键连接点。在这项研究中,微阵列数据显示,增加氧气或减少NOx会导致参与能量代谢和转运的基因表达发生改变,并导致编码ROS代谢酶的基因上调。 Nox的丢失还导致编码转录因子和信号分子的几种基因上调,包括氧化还原敏感的调节基因rex。 Nox启动子的特征表明,Nox受氧气,SpxA和Rex调节。这些数据表明了一个调节回路,其中NOX在氧还原和NAD + 再生中的作用分别影响Spx和Rex的活性水平以及它们的调控因子,后者控制着包括nox在内的多个基因对氧化应激条件下变形链球菌的生长至关重要。

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