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铁结合蛋白Dps赋予空肠弯曲菌对过氧化氢应激的抗性。

The iron-binding protein Dps confers hydrogen peroxide stress resistance to Campylobacter jejuni.

作者信息

Ishikawa Takahiko, Mizunoe Yoshimitsu, Kawabata Shun-ichiro, Takade Akemi, Harada Mine, Wai Sun Nyunt, Yoshida Shin-ichi

机构信息

Department of Bacteriology, Internal Medicine, Faculty of Medical Sciences, Kyushu University, Fukuoka 812-8582, Japan.

出版信息

J Bacteriol. 2003 Feb;185(3):1010-7. doi: 10.1128/JB.185.3.1010-1017.2003.

Abstract

We identified and characterized the iron-binding protein Dps from Campylobacter jejuni. Electron microscopic analysis of this protein revealed a spherical structure of 8.5 nm in diameter, with an electron-dense core similar to those of other proteins of the Dps (DNA-binding protein from starved cells) family. Cloning and sequencing of the Dps-encoding gene (dps) revealed that a 450-bp open reading frame (ORF) encoded a protein of 150 amino acids with a calculated molecular mass of 17,332 Da. Amino acid sequence comparison indicated a high similarity between C. jejuni Dps and other Dps family proteins. In C. jejuni Dps, there are iron-binding motifs, as reported in other Dps family proteins. C. jejuni Dps bound up to 40 atoms of iron per monomer, whereas it did not appear to bind DNA. An isogenic dps-deficient mutant was more vulnerable to hydrogen peroxide than its parental strain, as judged by growth inhibition tests. The iron chelator Desferal restored the resistance of the Dps-deficient mutant to hydrogen peroxide, suggesting that this iron-binding protein prevented generation of hydroxyl radicals via the Fenton reaction. Dps was constitutively expressed during both exponential and stationary phase, and no induction was observed when the cells were exposed to H(2)O(2) or grown under iron-supplemented or iron-restricted conditions. On the basis of these data, we propose that this iron-binding protein in C. jejuni plays an important role in protection against hydrogen peroxide stress by sequestering intracellular free iron and is expressed constitutively to cope with the harmful effect of hydrogen peroxide stress on this microaerophilic organism without delay.

摘要

我们鉴定并表征了空肠弯曲菌中的铁结合蛋白Dps。对该蛋白的电子显微镜分析显示其为直径8.5 nm的球形结构,具有与其他Dps(饥饿细胞中的DNA结合蛋白)家族蛋白类似的电子致密核心。Dps编码基因(dps)的克隆和测序表明,一个450 bp的开放阅读框(ORF)编码了一个由150个氨基酸组成的蛋白,计算分子量为17,332 Da。氨基酸序列比较表明空肠弯曲菌Dps与其他Dps家族蛋白高度相似。与其他Dps家族蛋白一样,空肠弯曲菌Dps中存在铁结合基序。空肠弯曲菌Dps每个单体最多可结合40个铁原子,但它似乎不结合DNA。通过生长抑制试验判断,同基因dps缺陷型突变体比其亲本菌株对过氧化氢更敏感。铁螯合剂去铁胺恢复了Dps缺陷型突变体对过氧化氢的抗性,表明这种铁结合蛋白通过芬顿反应防止了羟基自由基的产生。Dps在指数期和稳定期均组成性表达,当细胞暴露于H₂O₂或在铁补充或铁限制条件下生长时未观察到诱导现象。基于这些数据,我们提出空肠弯曲菌中的这种铁结合蛋白通过螯合细胞内游离铁在抵抗过氧化氢应激中发挥重要作用,并且组成性表达以立即应对过氧化氢应激对这种微需氧菌的有害影响。

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