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Differential response of Porphyromonas gingivalis to varying levels and duration of hydrogen peroxide-induced oxidative stress

机译:卟啉孔牙龈的差异响应与过氧化氢致氧化应激的变化水平和持续时间

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Porphyromonas gingivalis, an anaerobic oral pathogen implicated in adult periodontitis, can exist in an environment of oxidative stress. To evaluate its adaptation to this environment, we have assessed the response of P. gingivalis W83 to varying levels and durations of hydrogen peroxide (H2O2)-induced stress. When P. gingivalis was initially exposed to a subinhibitory concentration of H2O2 (0.1 mM), an adaptive response to higher concentrations could be induced. Transcriptome analysis demonstrated that oxidative stress can modulate several functional classes of genes depending on the severity and duration of the exposure. A 10 min exposure to H2O2 revealed increased expression of genes involved in DNA damage and repair, while after 15 min, genes involved in protein fate, protein folding and stabilization were upregulated. Approximately 9 and 2.8?% of the P. gingivalis genome displayed altered expression in response to H2O2 exposure at 10 and 15 min, respectively. Substantially more genes were upregulated (109 at 10 min; 47 at 15 min) than downregulated (76 at 10 min; 11 at 15 min) by twofold or higher in response to H2O2 exposure. The majority of these modulated genes were hypothetical or of unknown function. One of those genes (pg1372) with DNA-binding properties that was upregulated during prolonged oxidative stress was inactivated by allelic exchange mutagenesis. The isogenic mutant P. gingivalis FLL363 (pg1372?:?:?ermF) showed increased sensitivity to H2O2 compared with the parent strain. Collectively, our data indicate the adaptive ability of P. gingivalis to oxidative stress and further underscore the complex nature of its resistance strategy under those conditions.
机译:Porphyromonas Gingivalis,一种在成年牙周炎中有族的厌氧口腔病原体,可以存在于氧化应激的环境中。为了评估其对这种环境的适应,我们评估了P.Gingivalis W83对氢过氧化氢(H2O2)的变化水平和持续时间的响应。当P. Gingivalis最初暴露于H 2 O 2(0.1mm)的后抑制时,可以诱导对更高浓度的适应性响应。转录组分析证明,氧化应激可以根据暴露的严重程度和持续时间调节若干功能性类别。 10分钟暴露于H 2 O 2揭示了DNA损伤和修复中所涉及的基因表达的增加,而15分钟后,上调蛋白质命运,蛋白质折叠和稳定化的基因。在10和15分钟的H 2 O 2暴露时,P.Gingivalis基因组的大约9和2.8?%展示了改变的表达。上调更多的基因(109分钟,15分钟,15分钟)比下调(10分钟在10分钟,15分钟,15分钟),响应于H 2 O 2暴露,或更高。这些调制基因的大部分是假设的或未知的功能。通过等待氧化应激期间上调的具有DNA结合性质的那些基因(PG1372)中的一种,通过等位基因交换诱变灭活。与亲本菌株相比,中源性突变体P. Gingival in Gingival is Fll363(pG1372?:Δ:Δ:ω:ωemF)显示对H 2 O 2的敏感性增加。统称,我们的数据表明,P.Gingivalis对氧化应激的适应能力,进一步强调了在这些条件下其抗性策略的复杂性质。

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