首页> 美国卫生研究院文献>Journal of Bacteriology >Identification and Characterization of a New Organic Hydroperoxide Resistance (ohr) Gene with a Novel Pattern of Oxidative Stress Regulation from Xanthomonas campestris pv. phaseoli
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Identification and Characterization of a New Organic Hydroperoxide Resistance (ohr) Gene with a Novel Pattern of Oxidative Stress Regulation from Xanthomonas campestris pv. phaseoli

机译:鉴定和表征的新的有机过氧化氢抗性(ohr)基因具有Xanthomonas campestris pv的氧化应激调控的新型模式。菜豆

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摘要

We have isolated a new organic hydroperoxide resistance (ohr) gene from Xanthomonas campestris pv. phaseoli. This was done by complementation of an Escherichia coli alkyl hydroperoxide reductase mutant with an organic hydroperoxide-hypersensitive phenotype. ohr encodes a 14.5-kDa protein. Its amino acid sequence shows high homology with several proteins of unknown function. An ohr mutant was subsequently constructed, and it showed increased sensitivity to both growth-inhibitory and killing concentrations of organic hydroperoxides but not to either H2O2 or superoxide generators. No alterations in sensitivity to other oxidants or stresses were observed in the mutant. ohr had interesting expression patterns in response to low concentrations of oxidants. It was highly induced by organic hydroperoxides, weakly induced by H2O2, and not induced at all by a superoxide generator. The novel regulation pattern of ohr suggests the existence of a second organic hydroperoxide-inducible system that differs from the global peroxide regulator system, OxyR. Expression of ohr in various bacteria tested conferred increased resistance to tert-butyl hydroperoxide killing, but this was not so for wild-type Xanthomonas strains. The organic hydroperoxide hypersensitivity of ohr mutants could be fully complemented by expression of ohr or a combination of ahpC and ahpF and could be partially complemented by expression ahpC alone. The data suggested that Ohr was a new type of organic hydroperoxide detoxification protein.
机译:我们已经从Xanthomonas campestris pv中分离出一个新的抗有机氢过氧化物(ohr)基因。菜豆。这是通过将大肠杆菌烷基氢过氧化物还原酶突变体与有机氢过氧化物超敏感表型互补来完成的。 ohr编码14.5kDa蛋白。其氨基酸序列与功能未知的几种蛋白质具有高度同源性。随后构建了一个ohr突变体,该突变体对抑制生长和杀死有机氢过氧化物的浓度均显示出更高的敏感性,但对H2O2或超氧化物生成器均不敏感。在突变体中未观察到对其他氧化剂或胁迫的敏感性变化。 ohr对低浓度的氧化剂有有趣的表达模式。它被有机氢过氧化物高度诱导,被H2O2弱诱导,而根本没有被超氧化物发生器诱导。 Ohr的新型调节模式表明存在第二种有机过氧化氢可诱导系统,该系统不同于全局过氧化物调节系统OxyR。在测试的各种细菌中表达hrr赋予了对叔丁基氢过氧化物杀灭的增加的抵抗力,但是对于野生型黄单胞菌菌株则并非如此。 ohr突变体或ahpC和ahpF的组合可完全补充ohr突变体的有机氢过氧化物超敏反应,而单独表达ahpC则可部分补充。数据表明,Ohr是一种新型的有机氢过氧化物排毒蛋白。

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