Su Tao, Che Chengchuan, Sun Ping, Li Xiaona, Gong Zhijin, Liu Jinfeng, Yang Ge
College of Life Sciences, Qufu Normal University.
J Gen Appl Microbiol. 2021 Oct 22;67(4):125-133. doi: 10.2323/jgam.2019.10.003. Epub 2020 Oct 30.
Glutaredoxins (Grxs) and thioredoxins (Trxs) play a critical role in resistance to oxidative conditions. However, physiological and biochemical roles of Mycoredoxin 3 (Mrx3) that shared a high amino acid sequence similarity to Grxs remain unknown in Corynebacterium glutamicum. Here we showed that mrx3 deletion strains of C. glutamicum was involved in the protection against oxidative stress. Recombinant Mrx3 not only catalytically reduced the disulfide bonds in ribonucleotide reductase (RNR), insulin and 5,5'-dithiobis-(2-nitro-benzoicacid) (DTNB), but also reduced the mixed disulphides between mycothiol (MSH) and substrate, which was exclusively linked to the thioredoxin reductase (TrxR) electron transfer pathway by a dithiol mechanism. Site-directed mutagenesis confirmed that the conserved Cys17 and Cys20 in Mrx3 were necessary to maintain its activity. The mrx3 deletion mutant showed decreased resistance to various stress, and these sensitive phenotypes were almost fully restored in the complementary strain. The physiological roles of Mrx3 in resistance to various stress were further supported by the induced expression of mrx3 under various stress conditions, directly under the control of the stress-responsive extracytoplasmic function-sigma (ECF-σ) factor SigH. Thus, we presented the first evidence that Mrx3 protected against various oxidative stresses by acting as a disulfide oxidoreductase behaving like Trx.
谷氧还蛋白(Grxs)和硫氧还蛋白(Trxs)在抵抗氧化条件中发挥着关键作用。然而,与谷氧还蛋白具有高度氨基酸序列相似性的 Mycoredoxin 3(Mrx3)在谷氨酸棒杆菌中的生理和生化作用仍不清楚。在此我们表明,谷氨酸棒杆菌的 mrx3 缺失菌株参与了对氧化应激的保护。重组 Mrx3 不仅能催化还原核糖核苷酸还原酶(RNR)、胰岛素和 5,5'-二硫代双(2-硝基苯甲酸)(DTNB)中的二硫键,还能还原巯基乙醇(MSH)与底物之间的混合二硫化物,其通过二硫醇机制专门与硫氧还蛋白还原酶(TrxR)电子传递途径相连。定点诱变证实,Mrx3 中保守的 Cys17 和 Cys20 对于维持其活性是必需的。mrx3 缺失突变体对各种应激的抗性降低,而这些敏感表型在互补菌株中几乎完全恢复。在各种应激条件下,mrx3 在应激反应胞外功能-σ(ECF-σ)因子 SigH 的直接控制下被诱导表达,这进一步支持了 Mrx3 在抵抗各种应激中的生理作用。因此,我们首次证明 Mrx3 通过作为一种类似硫氧还蛋白的二硫键氧化还原酶来保护细胞免受各种氧化应激。