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首页> 外文期刊>Frontiers in Microbiology >Oxidized OxyR Up-Regulates ahpCF Expression to Suppress Plating Defects of oxyR- and Catalase-Deficient Strains
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Oxidized OxyR Up-Regulates ahpCF Expression to Suppress Plating Defects of oxyR- and Catalase-Deficient Strains

机译:氧化的OxyR上调 ahpCF 表达以抑制 oxyR-和过氧化氢酶缺陷菌株的电镀缺陷。

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摘要

It is well established that in bacteria, such as Escherichia coli , OxyR is a transcriptional regulator that mediates the response to H _(2)O _(2) by activating the OxyR regulon, which consists of many genes that play vital roles in oxidative stress resistance. In Shewanella , OxyR regulates, however, in both reduced and oxidized states, the production of H _(2)O _(2) scavengers, including major catalase KatB and NADH peroxidase AhpCF. Here we showed that the oxyR mutant carried a plating defect manifested as division arresting, a phenotype that can be completely suppressed by an OxyR variant constitutively existing in oxidized form (OxyR ~(L197P)). This effect of OxyR ~(L197P) could not be solely attributed to the increment in KatB production, since the suppression was also observed in the absence of KatB. Although expression of peroxidase CcpA was greatly activated by OxyR ~(L197P), the contribution of the protein in alleviating plating defect was negligible. We eventually identified AhpCF as the critical factor, when produced at substantially elevated levels by OxyR ~(L197P), to protect the cell from H _(2)O _(2) attack. Our data indicate that AhpCF is a particularly important peroxidase in oxidative stress resistance in Shewanella , not only playing a compensatory role for catalase, but also by itself providing sufficient protection from killing of H _(2)O _(2) generated abiotically.
机译:众所周知,在细菌(例如大肠杆菌)中,OxyR是一种转录调节因子,可通过激活OxyR regulon来介导对H _(2)O _(2)的应答,该OxyR regulon由许多在氧化中起重要作用的基因组成耐压力。在希瓦氏菌中,OxyR调节还原和氧化状态下H_(2)O_(2)清除剂的产生,包括主要的过氧化氢酶KatB和NADH过氧化物酶AhpCF。在这里,我们表明oxyR突变体携带的镀层缺陷表现为分裂停滞,这种表型可以被以氧化形式(OxyR〜(L197P))形式存在的OxyR变体完全抑制。 OxyR〜(L197P)的这种作用不能仅归因于KatB产量的增加,因为在不存在KatB的情况下也观察到了抑制作用。尽管过氧化物酶CcpA的表达被OxyR〜(L197P)极大地激活,但是该蛋白在减轻电镀缺陷中的作用可忽略不计。最终,当OxyR〜(L197P)显着提高了水平时,我们将AhpCF确定为关键因素,以保护细胞免受H_(2)O_(2)攻击。我们的数据表明,AhpCF是希瓦氏菌抗氧化应激的一个特别重要的过氧化物酶,不仅对过氧化氢酶起补偿作用,而且其自身也提供了足够的保护作用,以防止非生物杀灭H_(2)O_(2)。

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