Rosado Leonardo Astolfi, Wahni Khadija, Degiacomi Giulia, Pedre Brandán, Young David, de la Rubia Alfonso G, Boldrin Francesca, Martens Edo, Marcos-Pascual Laura, Sancho-Vaello Enea, Albesa-Jové David, Provvedi Roberta, Martin Charlotte, Makarov Vadim, Versées Wim, Verniest Guido, Guerin Marcelo E, Mateos Luis M, Manganelli Riccardo, Messens Joris
From the Center for Structural Biology, Vlaams Instituut voor Biotechnologie (VIB), B-1050 Brussels, Belgium.
the Brussels Center for Redox Biology, B-1050 Brussels, Belgium.
J Biol Chem. 2017 Aug 11;292(32):13097-13110. doi: 10.1074/jbc.M117.797837. Epub 2017 Jun 15.
The gene encodes an oxidoreductase enzyme annotated as DsbA. It has a CPWC active-site motif embedded within its thioredoxin fold domain and mediates the activation of the prodrug TP053, a thienopyrimidine derivative that kills both replicating and nonreplicating bacilli. However, its mode of action and actual enzymatic function in have remained enigmatic. In this study, we report that Rv2466c is essential for bacterial survival under HO stress. Further, we discovered that Rv2466c lacks oxidase activity; rather, it receives electrons through the mycothiol/mycothione reductase/NADPH pathway to activate TP053, preferentially via a dithiol-disulfide mechanism. We also found that Rv2466c uses a monothiol-disulfide exchange mechanism to reduce -mycothiolated mixed disulfides and intramolecular disulfides. Genetic, phylogenetic, bioinformatics, structural, and biochemical analyses revealed that Rv2466c is a novel mycothiol-dependent reductase, which represents a mycoredoxin cluster of enzymes within the DsbA family different from the glutaredoxin cluster to which mycoredoxin-1 (Mrx1 or Rv3198A) belongs. To validate this DsbA-mycoredoxin cluster, we also characterized a homologous enzyme of (NCgl2339) and observed that it demycothiolates and reduces a mycothiol arsenate adduct with kinetic properties different from those of Mrx1. In conclusion, our work has uncovered a DsbA-like mycoredoxin that promotes mycobacterial resistance to oxidative stress and reacts with free mycothiol and mycothiolated targets. The characterization of the DsbA-like mycoredoxin cluster reported here now paves the way for correctly classifying similar enzymes from other organisms.
该基因编码一种被注释为DsbA的氧化还原酶。它在其硫氧还蛋白折叠结构域内具有CPWC活性位点基序,并介导前药TP053(一种噻吩并嘧啶衍生物,可杀死正在复制和非复制的杆菌)的活化。然而,其在体内的作用模式和实际酶功能仍然不明。在本研究中,我们报告Rv2466c在过氧化氢胁迫下对细菌存活至关重要。此外,我们发现Rv2466c缺乏氧化酶活性;相反,它通过硫醇/硫辛酰胺还原酶/NADPH途径接收电子以激活TP053,优先通过二硫醇-二硫化物机制。我们还发现Rv2466c使用单硫醇-二硫化物交换机制来还原硫醇化的混合二硫化物和分子内二硫化物。遗传、系统发育、生物信息学、结构和生化分析表明,Rv2466c是一种新型的硫醇依赖性还原酶,它代表了DsbA家族中与硫氧还蛋白-1(Mrx1或Rv3198A)所属的谷氧还蛋白簇不同的硫氧还蛋白酶簇。为了验证这个DsbA-硫氧还蛋白簇,我们还对其同源酶(NCgl2339)进行了表征,并观察到它使硫醇化的砷酸加合物脱硫醇化并还原,其动力学性质与Mrx1不同。总之,我们的工作发现了一种类似DsbA的硫氧还蛋白,它促进分枝杆菌对氧化应激的抗性,并与游离硫醇和硫醇化靶标发生反应。本文报道的类似DsbA的硫氧还蛋白簇的表征现在为正确分类来自其他生物体的类似酶铺平了道路。