首页> 外文期刊>Microbiology >Resistance to hydrogen peroxide in Helicobacter pylori: role of catalase (KatA) and Fur, and functional analysis of a novel gene product designated ‘KatA-associated protein’, KapA (HP0874)
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Resistance to hydrogen peroxide in Helicobacter pylori: role of catalase (KatA) and Fur, and functional analysis of a novel gene product designated ‘KatA-associated protein’, KapA (HP0874)

机译:幽门螺杆菌中过氧化氢的抗性:过氧化氢酶(kata)和毛皮的作用,以及Kapa(HP0874)的新型基因产物的功能分析。(HP0874)

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Helicobacter pylori infection elicits an aggressive inflammatory response that the bacterium is able to resist by virtue of its well-adapted antioxidant defence mechanisms. Catalase (KatA) appears to be a key enzyme in this resistance. Upstream of katA, a low-affinity ferric uptake regulator (Fur)-box has been identified. Downstream of katA, an ORF (HP0874) with no known function has also been identified. Non-polar isogenic mutants of katA, fur and HP0874 were constructed by allelic exchange. The impact of these mutations on the catalase activities and bacterial viability following exposure to hydrogen peroxide was studied. Concurrently, the effect of variation in the iron content of the media used to grow the cells was determined. The data showed that catalase-deficient isolates of H. pylori were hypersensitive to hydrogen peroxide, whereas wild-type cells could resist ~~100?mM hydrogen peroxide. Fur-deficient mutants and cells grown on low-iron-containing medium showed a distinct reduction in catalase activity and increased sensitivity to hydrogen peroxide. The data suggest a direct or indirect effect of Fur and iron on the activity of catalase. HP0874-deficient mutants showed no reduction in catalase activity but showed an increased sensitivity to hydrogen peroxide. That is, the protein encoded by HP0874 appears to have a role in resistance to hydrogen peroxide not directly related to catalase activity. This is the first report of a functional relationship of the product of this ORF. There is evidence of protein–protein interaction between KatA and the product encoded by HP0874, and the name ‘KatA-associated protein’ (KapA) is proposed.
机译:幽门螺杆菌感染引发了一种积极的炎症反应,即通过其适应良好的抗氧化防御机制,细菌能够抵抗细菌。过氧化氢酶(Kata)似乎是这种阻力的关键酶。在Kata的上游,已经确定了一种低亲和力的Furric摄取调节器(毛皮)箱。还识别了kata的下游,没有已知功能的ORF(HP0874)。通过等位基因交换构建Kata,毛皮和HP0874的非极性同种突变体。研究了这些突变对暴露于过氧化氢后的过氧化氢酶活性和细菌活力的影响。同时,测定用于生长细胞的培养基的铁含量的变化的影响。该数据显示H.幽门螺杆菌的过氧化酶缺陷的分离物对过氧化氢过敏,而野生型细胞可以抵抗~~ 100?mm过氧化氢。在含低铁培养基上生长的毛虫缺陷突变体和细胞显示出过氧化氢酶活性的明显降低,并增加对过氧化氢的敏感性。数据表明皮草和铁对过氧化氢酶活性的直接或间接影响。 HP0874缺陷突变体显示不降低过氧化氢酶活性但对过氧化氢的敏感性增加。也就是说,由HP0874编码的蛋白质似乎具有与过氧化氢无直接相关的过氧化氢活性的作用。这是该ORF产品的功能关系的第一报告。有证据表明Kata和HP0874编码的产品之间的蛋白质 - 蛋白质相互作用,提出了名称的“Kata相关蛋白”(KAPA)。

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