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Exposure to Cadmium Elevates Expression of Genes in the OxyR and OhrR Regulons and Induces Cross-Resistance to Peroxide Killing Treatment in Xanthomonas campestris

机译:暴露于镉可提高OxyR和OhrR调节子中的基因表达,并诱导对油菜黄单胞菌的过氧化物杀伤处理产生交叉耐药性

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摘要

Cadmium is an important heavy metal pollutant. For this study, we investigated the effects of cadmium exposure on the oxidative stress responses of Xanthomonas campestris, a soil and plant pathogenic bacterium. The exposure of X. campestris to low concentrations of cadmium induces cross-protection against subsequent killing treatments with either H2O2 or the organic hydroperoxide tert-butyl hydroperoxide (tBOOH), but not against the superoxide generator menadione. The cadmium-induced resistance to peroxides is due to the metal's ability to induce increased levels of peroxide stress protective enzymes such as alkyl hydroperoxide reductase (AhpC), monofunctional catalase (KatA), and organic hydroperoxide resistance protein (Ohr). Cadmium-induced resistance to H2O2 is dependent on functional OxyR, a peroxide-sensing transcription regulator. Cadmium-induced resistance to tBOOH shows a more complex regulatory pattern. The inactivation of the two major sensor-regulators of organic hydroperoxide, OxyR and OhrR, only partially inhibited cadmium-induced protection against tBOOH, suggesting that these genes do have some role in the process. However, other, as yet unknown mechanisms are involved in inducible organic hydroperoxide protection. Furthermore, we show that the cadmium-induced peroxide stress response is mediated by the metal's ability to predominately cause an increase in intracellular concentrations of organic hydroperoxide and, in part, H2O2. Analyses of various mutants of peroxide-metabolizing enzymes suggested that this increase in organic hydroperoxide levels is, at least in part, responsible for cadmium toxicity in Xanthomonas.
机译:镉是重要的重金属污染物。在这项研究中,我们调查了镉暴露对土壤和植物病原细菌黄单胞菌氧化应激反应的影响。喜树油菜暴露于低浓度的镉下会产生交叉保护作用,以防其后被H2O2或有机氢过氧化物叔丁基氢过氧化物(tBOOH)杀死,但不会对抗过氧化物发生器甲萘醌。镉诱导的对过氧化物的抗性是由于金属能够诱导增加水平的过氧化物胁迫保护酶,如烷基氢过氧化物还原酶(AhpC),单功能过氧化氢酶(KatA)和有机氢过氧化物抗性蛋白(Ohr)。镉诱导的对H2O2的抗性取决于功能性OxyR(一种过氧化物感应的转录调节剂)。镉诱导的对tBOOH的抗性表现出更复杂的调节模式。有机氢过氧化物的两种主要传感器调节剂OxyR和OhrR的失活仅部分抑制了镉诱导的针对tBOOH的保护,表明这些基因确实在该过程中发挥了一定作用。但是,诱导有机氢过氧化物的保护还涉及其他未知机制。此外,我们表明,镉诱导的过氧化物应力反应是由金属的能力介导的,该能力主要引起细胞内有机氢过氧化物和部分H2O2浓度的增加。对过氧化物代谢酶的各种突变体的分析表明,有机氢过氧化物水平的这种提高至少部分是造成黄单胞菌中镉毒性的原因。

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