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费氏中华根瘤菌类菌体对氧化应激的防御涉及一种调控复杂的非典型2-半胱氨酸过氧化物酶。

Defence of Rhizobium etli bacteroids against oxidative stress involves a complexly regulated atypical 2-Cys peroxiredoxin.

作者信息

Dombrecht Bruno, Heusdens Christophe, Beullens Serge, Verreth Christel, Mulkers Esther, Proost Paul, Vanderleyden Jos, Michiels Jan

机构信息

Centre of Microbial and Plant Genetics, Katholieke Universiteit Leuven, 3001 Heverlee, Belgium.

出版信息

Mol Microbiol. 2005 Feb;55(4):1207-21. doi: 10.1111/j.1365-2958.2005.04457.x.

Abstract

In general, oxidative stress, the consequence of an aerobic lifestyle, induces bacterial antioxidant defence enzymes. Here we report on a peroxiredoxin of Rhizobium etli, prxS, strongly expressed under microaerobic conditions and during the symbiotic interaction with Phaseolus vulgaris. The microaerobic induction of the prxS-rpoN2 operon is mediated by the alternative sigma factor RpoN and the enhancer-binding protein NifA. The RpoN-dependent promoter is also active under low-nitrogen conditions through the enhancer-binding protein NtrC. An additional symbiosis-specific weak promoter is located between prxS and rpoN2. Constitutive expression of prxS confers enhanced survival and growth to R. etli in the presence of H2O2. Single prxS mutants are not affected in their symbiotic abilities or defence response against oxidative stress under free-living conditions. In contrast, a prxS katG double mutant has a significantly reduced (>40%) nitrogen fixation capacity, suggesting a functional redundancy between PrxS and KatG, a bifunctional catalase-peroxidase. In vitro assays demonstrate the reduction of PrxS protein by DTT and thioredoxin. PrxS displays substrate specificity towards H2O2 (Km = 62 microM) over alkyl hydroperoxides (Km > 1 mM). Peroxidase activity is abolished in both the peroxidatic (C56) and resolving (C156) cysteine PrxS mutants, while the conserved C81 residue is required for proper folding of the protein. Resolving of the R. etli PrxS peroxidatic cysteine is probably an intramolecular process and intra- and intersubunit associations were observed. Taken together, our data support, for the first time, a role for an atypical 2-Cys peroxiredoxin against oxidative stress in R. etli bacteroids.

摘要

一般来说,氧化应激作为有氧生活方式的结果,会诱导细菌的抗氧化防御酶。在此,我们报道了一种菜豆根瘤菌的过氧化物还原酶prxS,它在微需氧条件下以及与菜豆的共生相互作用过程中强烈表达。prxS - rpoN2操纵子的微需氧诱导由替代σ因子RpoN和增强子结合蛋白NifA介导。依赖RpoN的启动子在低氮条件下也通过增强子结合蛋白NtrC发挥活性。另外一个共生特异性的弱启动子位于prxS和rpoN2之间。prxS的组成型表达使菜豆根瘤菌在过氧化氢存在的情况下具有更强的存活和生长能力。单个prxS突变体在共生能力或自由生活条件下对氧化应激的防御反应方面不受影响。相比之下,prxS katG双突变体的固氮能力显著降低(>40%),这表明PrxS和KatG(一种双功能过氧化氢酶 - 过氧化物酶)之间存在功能冗余。体外试验表明二硫苏糖醇(DTT)和硫氧还蛋白可使PrxS蛋白还原。PrxS对过氧化氢(Km = 62 μM)的底物特异性高于烷基过氧化氢(Km > 1 mM)。在过氧化物酶活性位点(C56)和还原位点(C156)的半胱氨酸PrxS突变体中,过氧化物酶活性均丧失,而保守的C81残基是该蛋白正确折叠所必需的。菜豆根瘤菌PrxS过氧化物酶活性位点半胱氨酸的还原可能是一个分子内过程,并且观察到了亚基内和亚基间的关联。综上所述,我们的数据首次支持了一种非典型的2 - 半胱氨酸过氧化物还原酶在菜豆根瘤菌类菌体中对抗氧化应激的作用。

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