首页> 外文OA文献 >Hydroperoxide and peroxynitrite reductase activity of poplar thioredoxin-dependent glutathione peroxidase 5: kinetics, catalytic mechanism and oxidative inactivation.
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Hydroperoxide and peroxynitrite reductase activity of poplar thioredoxin-dependent glutathione peroxidase 5: kinetics, catalytic mechanism and oxidative inactivation.

机译:杨树硫氧还蛋白依赖性谷胱甘肽过氧化物酶5的氢过氧化物和过氧亚硝酸盐还原酶活性:动力学,催化机理和氧化失活。

摘要

Gpxs (glutathione peroxidases) constitute a family of peroxidases, including selenocysteine- or cysteine-containing isoforms (SeCys-Gpx or Cys-Gpx), which are regenerated by glutathione or Trxs (thioredoxins) respectively. In the present paper we show new data concerning the substrates of poplar Gpx5 and the residues involved in its catalytic mechanism. The present study establishes the capacity of this Cys-Gpx to reduce peroxynitrite with a catalytic efficiency of 106 M-1·s-1. In PtGpx5 (poplar Gpx5; Pt is Populus trichocarpa), Glu79, which replaces the glutamine residue usually found in the Gpx catalytic tetrad, is likely to be involved in substrate selectivity. Although the redox midpoint potential of the Cys44-Cys92 disulfide bond and the pKa of Cys44 are not modified in the E79Q variant, it exhibited significantly improved kinetic parameters (Kperoxide and kcat) with tert-butyl hydroperoxide. The characterization of the monomeric Y151R variant demonstrated that PtGpx5 is not an obligate homodimer. Also, we show that the conserved Phe90 is important for Trx recognition and that Trx-mediated recycling of PtGpx5 occurs via the formation of a transient disulfide bond between the Trx catalytic cysteine residue and the Gpx5 resolving cysteine residue. Finally, we demonstrate that the conformational changes observed during the transition from the reduced to the oxidized form of PtGpx5 are primarily determined by the oxidation of the peroxidatic cysteine into sulfenic acid. Also, MS analysis of in-vitro-oxidized PtGpx5 demonstrated that the peroxidatic cysteine residue can be over-oxidized into sulfinic or sulfonic acids. This suggests that some isoforms could have dual functions potentially acting as hydrogen-peroxide- and peroxynitrite-scavenging systems and/or as mediators of peroxide signalling as proposed for 2-Cys peroxiredoxins.
机译:Gpxs(谷胱甘肽过氧化物酶)构成一类过氧化物酶,包括含硒代半胱氨酸或半胱氨酸的同工型(SeCys-Gpx或Cys-Gpx),它们分别由谷胱甘肽或Trxs(硫氧还蛋白)再生。在本文中,我们显示了有关杨树Gpx5的底物及其催化机理中涉及的残基的新数据。本研究建立了这种Cys-Gpx还原过氧亚硝酸盐的能力,催化效率为106 M-1·s-1。在PtGpx5(杨树Gpx5; Pt是毛果杨)中,Glu79(可能替代通常在Gpx催化四联体中发现的谷氨酰胺残基)可能与底物选择性有关。尽管在E79Q变体中未修饰Cys44-Cys92二硫键的氧化还原中点电势和Cys44的pKa,但在叔丁基氢过氧化物中,其动力学参数(过氧化物和kcat)显着提高。 Y151R单体变体的特征表明,PtGpx5不是专一的同二聚体。此外,我们表明保守的Phe90对于Trx识别很重要,并且Trx介导的PtGpx5的回收通过Trx催化半胱氨酸残基和Gpx5解析半胱氨酸残基之间形成的瞬时二硫键而发生。最后,我们证明从还原型PtGpx5氧化态转变过程中观察到的构象变化主要是由过氧化半胱氨酸氧化成亚磺酸决定的。同样,体外氧化的PtGpx5的MS分析表明,过氧化的半胱氨酸残基可被过氧化为亚磺酸或磺酸。这表明某些同工型可能具有双重功能,如2-Cys过氧氧还蛋白所建议的那样,具有潜在的过氧化氢和过氧亚硝酸盐清除系统和/或过氧化物信号传导介质的作用。

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