首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Direct inhibition by nitric oxide of the transcriptional ferric uptake regulation protein via nitrosylation of the iron
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Direct inhibition by nitric oxide of the transcriptional ferric uptake regulation protein via nitrosylation of the iron

机译:一氧化氮通过铁的亚硝化作用直接抑制转录铁摄取调节蛋白

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Ferric uptake regulation protein (Fur) is a bacterial global regulator that uses iron as a cofactor to bind to specific DNA sequences. The function of Fur is not limited to iron homeostasis. A wide variety of genes involved in various mechanisms such as oxidative and acid stresses are under Fur control. Flavohemoglobin (Hmp) is an NO-detoxifying enzyme induced by NO and nitrosothiol compounds. Fur recently was found to regulate hmp in Salmonella typhimurium, and in Escherichia coli, the iron-chelating agent 2,2'-dipyridyl induces hmp expression. We now establish direct inhibition of E. coli Fur activity by NO. By using chromosomal Fur-regulated lacZ reporter fusion in E. coli. Fur activity is switched off by NO at micromolar concentration. In vitro Fur DNA-binding activity, as measured by protection of restriction site in aerobactin promoter, is directly sensitive to NO. NO reacts with Fe" in purified FeFur protein to form a S = 1/2 low-spin FeFur-NO complex with a g = 2.03 EPR signal. Appearance of the same EPR signal in NO-treated cells links nitrosylation of the iron with Fur inhibition. The nitrosylated Fur protein is still a dimer and is stable in anaerobiosis but slowly decays in air. This inhibition probably arises from a conformational switch, leading to an inactive dimeric protein. These data establish a link between control of iron metabolism and the response to NO effects.
机译:铁摄取调节蛋白(Fur)是一种细菌全局调节剂,使用铁作为辅因子与特定的DNA序列结合。毛皮的功能不仅限于铁体内平衡。在Fur的控制下,涉及各种机制(例如氧化和酸胁迫)的多种基因。黄素血红蛋白(Hmp)是由NO和亚硝基硫醇化合物诱导的NO解毒酶。最近发现Fur可以调节鼠伤寒沙门氏菌中的hmp,而在大肠杆菌中,铁螯合剂2,2'-联吡啶可诱导hmp表达。现在,我们确定NO对E. ​​coli Fur活性的直接抑制。通过在大肠杆菌中使用染色体Fur调节的lacZ报告基因融合体。在微摩尔浓度下,NO切断了毛皮的活性。通过保护气浮蛋白启动子中限制性位点测量的体外Fur DNA结合活性对NO直接敏感。 NO与纯化的FeFur蛋白中的Fe“反应形成S = 1/2的低旋转FeFur-NO复合物,其ag = 2.03 EPR信号。在NO处理的细胞中出现相同的EPR信号将铁的亚硝基化与抑制Fur结合起来亚硝基化的Fur蛋白仍然是二聚体,在厌氧状态下稳定,但在空气中缓慢衰减,这种抑制作用可能是由于构象转换而导致的二聚体蛋白失活,这些数据在控制铁代谢和对铁代谢的反应之间建立了联系。没有影响。

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