首页> 美国卫生研究院文献>Journal of Bacteriology >Oxygen Reactivity of Both Respiratory Oxidases in Campylobacter jejuni: the cydAB Genes Encode a Cyanide-Resistant Low-Affinity Oxidase That Is Not of the Cytochrome bd Type
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Oxygen Reactivity of Both Respiratory Oxidases in Campylobacter jejuni: the cydAB Genes Encode a Cyanide-Resistant Low-Affinity Oxidase That Is Not of the Cytochrome bd Type

机译:空肠弯曲菌中两种呼吸氧化酶的氧反应性:cydAB基因编码抗氰化物的低亲和力氧化酶不是细胞色素bd型。

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摘要

The microaerophilic bacterium Campylobacter jejuni is a significant food-borne pathogen and is predicted to possess two terminal respiratory oxidases with unknown properties. Inspection of the genome reveals an operon (cydAB) apparently encoding a cytochrome bd-like oxidase homologous to oxidases in Escherichia coli and Azotobacter vinelandii. However, C. jejuni cells lacked all spectral signals characteristic of the high-spin hemes b and d of these oxidases. Mutation of the cydAB operon of C. jejuni did not have a significant effect on growth, but the mutation reduced formate respiration and the viability of cells cultured in 5% oxygen. Since cyanide resistance of respiration was diminished in the mutant, we propose that C. jejuni CydAB be renamed CioAB (cyanide-insensitive oxidase), as in Pseudomonas aeruginosa. We measured the oxygen affinity of each oxidase, using a highly sensitive assay that exploits globin deoxygenation during respiration-catalyzed oxygen uptake. The CioAB-type oxidase exhibited a relatively low affinity for oxygen (Km = 0.8 μM) and a Vmax of >20 nmol/mg/s. Expression of cioAB was elevated fivefold in cells grown at higher rates of oxygen provision. The alternative, ccoNOQP-encoded cyanide-sensitive oxidase, expected to encode a cytochrome cb′-type enzyme, plays a major role in the microaerobic respiration of C. jejuni, since it appeared to be essential for viability and exhibited a much higher oxygen affinity, with a Km value of 40 nM and a Vmax of 6 to 9 nmol/mg/s. Low-temperature photodissociation spectrophotometry revealed that neither oxidase has ligand-binding activity typical of the heme-copper oxidase family. These data are consistent with cytochrome oxidation during photolysis at low temperatures.
机译:空肠弯曲杆菌是一种重要的食源性病原体,据预测具有两个末端呼吸道氧化酶,性质未知。对基因组的检查揭示了一个操纵子(cydAB),该操纵子显然编码一种与大肠杆菌和葡萄固氮菌中的氧化酶同源的细胞色素bd样氧化酶。然而,空肠弯曲杆菌细胞缺乏这些氧化酶的高纺丝血红素b和d所特有的所有光谱信号。空肠弯曲菌cydAB操纵子的突变对生长没有显着影响,但该突变降低了甲酸呼吸和在5%氧气中培养的细胞的活力。由于该突变体降低了呼吸对氰化物的抗性,因此我们建议将空肠弯曲杆菌CydAB重命名为CioAB(对氰化物不敏感的氧化酶),就像在铜绿假单胞菌中一样。我们使用高度敏感的测定法测量了每种氧化酶的氧亲和力,该测定法在呼吸催化的氧吸收过程中利用了球蛋白脱氧作用。 CioAB型氧化酶对氧气的亲和力较低(Km = 0.8μM), V max大于20 nmol / mg / s。在较高供氧速率下生长的细胞中, cioAB 的表达提高了五倍。替代的 ccoNOQP 编码的氰化物敏感氧化酶,预期可编码细胞色素 cb'型酶,在 C的微有氧呼吸中起主要作用。空肠,因为它似乎对生存力至关重要,并且表现出更高的氧亲和力, Km 值为40 nM, V max为6至9 nmol / mg / s。低温光解离分光光度法表明,这两种氧化酶都没有血红铜-氧化酶家族的典型配体结合活性。这些数据与低温光解过程中细胞色素的氧化一致。

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