Laboratory of Enzyme Technology, Department of Biotechnology, School of Food, Biotechnology and Development, Agricultural University of Athens, 75 Iera Odos Street, GR-11855 Athens, Greece.
Turku Centre for Biotechnology, University of Turku and Åbo Akademi University, Turku 20521, Finland.
Int J Biol Macromol. 2017 Jan;94(Pt B):802-812. doi: 10.1016/j.ijbiomac.2016.04.044. Epub 2016 Apr 19.
The plant tau class glutathione transferases (GSTs) perform diverse catalytic as well as non-catalytic roles in detoxification of xenobiotics, prevention of oxidative damage and endogenous metabolism. In the present work, the tau class isoenzyme GSTU2-2 from Glycine max (GmGSTU2-2) was characterized. Gene expression analysis of GmGSTU2 suggested a highly specific and selective induction pattern to osmotic stresses, indicating that gene expression is controlled by a specific mechanism. Purified, recombinant GmGSTU2-2 was shown to exhibit wide-range specificity towards xenobiotic compounds and ligand-binding properties, suggesting that the isoenzyme could provide catalytic flexibility in numerous metabolic conditions. Homology modeling and phylogenetic analysis suggested that the catalytic and ligand binding sites of GmGSTU2-2 are well conserved compared to other tau class GSTs. Structural analysis identified key amino acid residues in the hydrophobic binding site and provided insights into the substrate specificity of this enzyme. The results established that GmGSTU2-2 participates in a broad network of catalytic and regulatory functions involved in the plant stress response.
植物类 tau 谷胱甘肽转移酶 (GSTs) 在解毒外来化合物、预防氧化损伤和内源性代谢方面具有多种催化和非催化作用。本研究对 Glycine max (GmGSTU2-2) 的 tau 类同工酶 GSTU2-2 进行了表征。GmGSTU2 的基因表达分析表明,其对渗透胁迫具有高度特异性和选择性诱导模式,表明基因表达受特定机制控制。纯化的重组 GmGSTU2-2 对多种外源化合物表现出广泛的特异性和配体结合特性,表明该同工酶在多种代谢条件下可提供催化灵活性。同源建模和系统发育分析表明,与其他 tau 类 GSTs 相比,GmGSTU2-2 的催化和配体结合位点具有良好的保守性。结构分析确定了疏水性结合位点中的关键氨基酸残基,为该酶的底物特异性提供了深入了解。研究结果表明,GmGSTU2-2 参与了涉及植物应激反应的广泛的催化和调节功能网络。