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Pseudomonas aeruginosa IscR-Regulated Ferredoxin NADP(+) Reductase Gene (fprB) Functions in Iron-Sulfur Cluster Biogenesis and Multiple Stress Response

机译:铜绿假单胞菌IscR调节的铁氧还蛋白NADP(+)还原酶基因(fprB)在铁硫簇生物发生和多重应激反应中的功能

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摘要

P. aeruginosa (PAO1) has two putative genes encoding ferredoxin NADP(+) reductases, denoted fprA and fprB. Here, the regulation of fprB expression and the protein’s physiological roles in [4Fe-4S] cluster biogenesis and stress protection are characterized. The fprB mutant has defects in [4Fe-4S] cluster biogenesis, as shown by reduced activities of [4Fe-4S] cluster-containing enzymes. Inactivation of the gene resulted in increased sensitivity to oxidative, thiol, osmotic and metal stresses compared with the PAO1 wild type. The increased sensitivity could be partially or completely suppressed by high expression of genes from the isc operon, which are involved in [Fe-S] cluster biogenesis, indicating that stress sensitivity in the fprB mutant is partially caused by a reduction in levels of [4Fe-4S] clusters. The pattern and regulation of fprB expression are in agreement with the gene physiological roles; fprB expression was highly induced by redox cycling drugs and diamide and was moderately induced by peroxides, an iron chelator and salt stress. The stress-induced expression of fprB was abolished by a deletion of the iscR gene. An IscR DNA-binding site close to fprB promoter elements was identified and confirmed by specific binding of purified IscR. Analysis of the regulation of fprB expression supports the role of IscR in directly regulating fprB transcription as a transcription activator. The combination of IscR-regulated expression of fprB and the fprB roles in response to multiple stressors emphasizes the importance of [Fe-S] cluster homeostasis in both gene regulation and stress protection.
机译:铜绿假单胞菌(PAO1)具有两个假定的编码铁氧还蛋白NADP(+)还原酶的基因,称为fprA和fprB。在此,对fprB表达的调控以及该蛋白在[4Fe-4S]簇生物发生和应激保护中的生理作用进行了表征。 fprB突变体在[4Fe-4S]簇生物发生中具有缺陷,如[4Fe-4S]簇酶的活性降低所显示。与PAO1野生型相比,该基因的失活导致对氧化,硫醇,渗透压和金属胁迫的敏感性增加。可以通过isc操纵子的高表达基因部分或完全抑制敏感性的提高,这些基因参与[Fe-S]簇生物发生,表明fprB突变体中的应激敏感性部分是由于[4Fe]水平降低引起的-4S]簇。 fprB表达的模式和调控与基因的生理作用是一致的。 fprB表达被氧化还原循环药物和二酰胺高度诱导,被过氧化物,铁螯合剂和盐胁迫适度诱导。应力诱导的fprB的表达被iscR基因的缺失所消除。通过纯化的IscR的特异性结合,鉴定并证实了接近fprB启动子元件的IscR DNA结合位点。对fprB表达调节的分析支持IscR在直接调节fprB转录作为转录激活因子中的作用。 IscR调节的fprB表达和 fprB 响应多种应激源的结合强调了[Fe-S]团簇稳态在基因调控和应激保护中的重要性。

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