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Oxidative-stress-inducible qorA encodes an NADPH-dependent quinone oxidoreductase catalysing a one-electron reduction in Staphylococcus aureus

机译:氧化应激诱导Qora编码NADPH依赖性醌氧化还原酶催化葡萄球菌的单电子减少

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This work characterized the putative quinone oxidoreductase gene (qorA) from Staphylococcus aureus. The deduced amino acid sequence indicated that the 333?aa protein contains an NAD(P)H-binding motif. A Northern blot analysis revealed that 2·6?kb and 1·4?kb signals were detected by using a qorA probe. Both the signals were enhanced under the presence of a redox-cycling agent, 9,10-phenanthrenequinone (PQ). It was also revealed that the expression of three genes, SA1988, SA1989 (qorA) and SA1990, was enhanced at the transcriptional level by PQ exposure. The results suggested that the 2·6?kb signal detected by the qorA probe was in two co-transcripts, i.e. SA1990–qorA and qorA–SA1988 were transcribed. Besides, primer extension analyses confirmed the enhancement of qorA and SA1990 transcripts. The GST (glutathione S-transferase)-tagged QorA protein was expressed in Escherichia coli and purified using a glutathione affinity column. In purification steps, a 36?kDa band co-purified with the GST–QorA, and it was detected even in the thrombin-cleaved fraction. N-terminal amino acid sequences for the 36?kDa protein revealed that it was an intact QorA. They showed that QorA formed a multimer under physiological conditions. The purified recombinant GST–QorA catalysed NADPH consumption in the presence of PQ as a substrate, but not NADH. To characterize the catalytic activity of QorA, superoxide anion that was generated through one-electron reduction of PQ and hydroquinone that was produced by two-electron reduction of PQ were measured. During reduction of PQ by GST–QorA, superoxide anion was generated, whereas a small amount of 9,10-dihydroxyphenanthrene (hydroquinone of PQ) was produced. These results suggest that the activity of QorA is similar to ζ-Crystallin, catalysing an NADPH-dependent one-electron reduction of quinone.
机译:这项工作表征了来自金黄色葡萄球菌的推定醌氧化酶基因(Qora)。推导的氨基酸序列表明333〜A蛋白含有NAD(P)H结合基序。 Northern印迹分析显示,通过使用Qora探针检测2·6ΩkB和1·4?KB信号。在氧化还原循环剂,9,10-菲醌(PQ)的存在下,两种信号都增强。还揭示了三种基因的表达,SA1988,SA1989(Qora)和SA1990,通过PQ暴露于转录水平提高。结果表明,Qora探针检测的2·6?KB信号在两个共转录物中,即转录SA1990-QORA和QORA-SA1988。此外,引物延伸分析证实了Qora和SA1990转录物的增强。 GST(谷胱甘肽S-转移酶) - 在大肠杆菌中表达了Qora蛋白,并使用谷胱甘肽亲和柱纯化。在纯化步骤中,用GST-qora共纯化36〜KDA带,即使在凝血酶切割的级分中也被检测。 N-末端氨基酸序列为36μlkda蛋白显示它是完整的qora。他们表明,Qora在生理条件下形成了多聚体。纯化的重组GST-QORA在PQ存在下催化的NADPH消耗作为底物,但不是NADH。为了表征Qora的催化活性,测量通过PQ的PQ和氢醌的单电子减少产生的超氧化物阴离子,其由PQ的两电子还原产生的PQ产生。通过GST-QORA减少PQ期间,产生超氧化物阴离子,而产生少量的9,10-二羟基苯嘌呤(PQ的氢醌)。这些结果表明,Qora的活性类似于Ⅳ结晶素,催化醌的NADPH依赖性一电子减少。

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