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Expression of alkyl hydroperoxide reductase is regulated negatively by OxyR1 and positively by RpoE2 sigma factor in Azospirillum brasilense Sp7

机译:在巴西拟螺螺旋藻中,烷基氢过氧化物还原酶的表达受OxyR1负调控,受RpoE2σ因子正调控。

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OxyR proteins are LysR-type transcriptional regulators, which play an important role in responding to oxidative stress in bacteria. Azospirillum brasilense Sp7 harbours two copies of OxyR. The inactivation of the oxyR1, the gene organized divergently to ahpC in A. brasilense Sp7, led to an increased tolerance to alkyl hydroperoxides, which was corroborated by an increase in alkyl hydroperoxide reductase (AhpC) activity, enhanced expression of ahpC?:lacZ fusion and increased synthesis of AhpC protein in the oxyR1::km mutant. The upstream region of ahpC promoter harboured a putative OxyR binding site, T-N11-A. Mutation of T, A or both in the T-N11-Amotif caused derepression of ahpC in A. brasilense suggesting that T-N11-A might be the binding site for a negative regulator. Retardation of the electrophoretic mobility of the T-N11-A motif harbouring oxyR1-ahpC intergenic DNA by recombinant OxyR1, under reducing as well as oxidizing conditions, indicated that OxyR1 acts as a negative regulator of ahpC in A. brasilense. Sequence of the promoter of ahpC, predicted on the basis of transcriptional start site, and an enhanced expression of ahpC:lacZ fusion in chrR2::km mutant background suggested that ahpC promoter was RpoE2 dependent. Thus, this study shows that in A. brasilense Sp7, ahpC expression is regulated negatively by OxyR1 but is regulated positively by RpoE2, an oxidative-stress-responsive sigma factor. It also shows that OxyR1 regulates the expression RpoE1, which is known to play an important role during photooxidative stress in A. brasilense.
机译:OxyR蛋白是LysR型转录调节因子,在响应细菌的氧化应激中起重要作用。巴西假单胞菌Sp7包含两个OxyR副本。 oxyR1的失活,该基因在巴西拟南芥Sp7中与ahpC趋异地组织,导致对烷基氢过氧化物的耐受性增加,这通过烷基氢过氧化物还原酶(AhpC)活性的增加,ahpCα:lacZ融合体表达的增强得到证实并增加了oxyR1 :: km突变体中AhpC蛋白的合成。 ahpC启动子的上游区域包含一个假定的OxyR结合位点,T-N11-A。 T-N11-Amotif中T,A或两者的突变会导致巴西拟南芥ahpC的抑制,这表明T-N11-A可能是负调控因子的结合位点。在还原和氧化条件下,重组OxyR1抑制了带有oxyR1-ahpC基因间DNA的T-N11-A基序的电泳迁移率,表明OxyR1在巴西拟南芥中充当ahpC的负调节剂。根据转录起始位点预测的ahpC启动子序列,以及在chrR2 :: km突变体背景中ahpC:lacZ融合体的增强表达表明ahpC启动子是RpoE2依赖性的。因此,这项研究表明,在巴西拟南芥Sp7中,ahpC的表达受OxyR1负调控,但受RpoE2(一种氧化应激响应的sigma因子)正调控。它还显示OxyR1调节RpoE1的表达,已知该表达在巴西拟南芥的光氧化应激中起重要作用。

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