首页> 外文期刊>The Journal of biological chemistry >Both Thioredoxin 2 and Glutaredoxin 2 Contribute to the Reduction of the Mitochondrial 2-Cys Peroxiredoxin Prx3
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Both Thioredoxin 2 and Glutaredoxin 2 Contribute to the Reduction of the Mitochondrial 2-Cys Peroxiredoxin Prx3

机译:硫氧吡嗪2和戊二糖胺2均有助于减少线粒体2-Cys过量氧化毒素PRX3

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The proteins from the thioredoxin family are crucial actors in redox signaling and the cellular response to oxidative stress. The major intracellular source for oxygen radicals are the components of the respiratory chain in mitochondria. Here, we show that the mitochondrial 2-Cys peroxiredoxin (Prx3) is not only substrate for thioredoxin 2 (Trx2), but can also be reduced by glutaredoxin 2 (Grx2) via the dithiol reaction mechanism. Grx2 reduces Prx3 exhibiting catalytic constants (Km, 23.8 μmol·liter?1; Vmax, 1.2 μmol·(mg·min)?1) similar to Trx2 (Km, 11.2 μmol·liter?1; Vmax, 1.1 μmol·(mg·min)?1). The reduction of the catalytic disulfide of the atypical 2-Cys Prx5 is limited to the Trx system. Silencing the expression of either Trx2 or Grx2 in HeLa cells using specific siRNAs did not change the monomer:dimer ratio of Prx3 detected by a specific 2-Cys Prx redox blot. Only combined silencing of the expression of both proteins led to an accumulation of oxidized protein. We further demonstrate that the distribution of Prx3 in different mouse tissues is either linked to the distribution of Trx2 or Grx2. These results introduce Grx2 as a novel electron donor for Prx3, providing further insights into pivotal cellular redox signaling mechanisms.
机译:来自硫昔林家族的蛋白质是氧化还原信号传导和对氧化应激的细胞反应的关键作用。氧自由基的主要细胞内源是线粒体呼吸链的组分。在这里,我们表明线粒体2-Cys过氧化毒素(PRX3)不仅是硫酸辛2(TRX2)的底物,而且还可以通过谷氨酸2(GRX2)通过二硫醇反应机制来降低。 Grx2减少了催化常数(Km,23.8μmol·literα1; Vmax,1.2μmol·(mg·min)Δ1)的PRX3,类似于Trx2(Km,11.2μmol·liter?1; Vmax,1.1μmol·(mg·最小)?1)。非典型2-Cys PRX5的催化二硫化硫化硫化物的降低限于TRX系统。使用特异性siRNA在HeLa细胞中沉默Trx2或Grx2的表达并未改变由特定的2-Cys PRX氧化还原印迹检测到的PRX3的单体:二聚体比。只有两种蛋白质的表达的组合沉默导致氧化蛋白的积累。我们进一步证明,不同小鼠组织中PRX3的分布与TRX2或GRX2的分布有关。这些结果将GRX2引入PRX3的新型电子给体,提供进一步的见解枢转细胞氧化还原信号机构。

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