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酿酒酵母谷氧还蛋白1和谷氧还蛋白2不同生化特性的结构方面

Structural aspects of the distinct biochemical properties of glutaredoxin 1 and glutaredoxin 2 from Saccharomyces cerevisiae.

作者信息

Discola Karen Fulan, de Oliveira Marcos Antonio, Rosa Cussiol José Renato, Monteiro Gisele, Bárcena José Antonio, Porras Pablo, Padilla C Alicia, Guimarães Beatriz Gomes, Netto Luis Eduardo Soares

机构信息

Departamento de Bioquímica, Instituto de Biologia, Universidade Estadual de Campinas, 13083-970 Campinas, Brazil.

出版信息

J Mol Biol. 2009 Jan 23;385(3):889-901. doi: 10.1016/j.jmb.2008.10.055. Epub 2008 Oct 28.

Abstract

Glutaredoxins (Grxs) are small (9-12 kDa) heat-stable proteins that are ubiquitously distributed. In Saccharomyces cerevisiae, seven Grx enzymes have been identified. Two of them (yGrx1 and yGrx2) are dithiolic, possessing a conserved Cys-Pro-Tyr-Cys motif. Here, we show that yGrx2 has a specific activity 15 times higher than that of yGrx1, although these two oxidoreductases share 64% identity and 85% similarity with respect to their amino acid sequences. Further characterization of the enzymatic activities through two-substrate kinetics analysis revealed that yGrx2 possesses a lower K(M) for glutathione and a higher turnover than yGrx1. To better comprehend these biochemical differences, the pK(a) of the N-terminal active-site cysteines (Cys27) of these two proteins and of the yGrx2-C30S mutant were determined. Since the pK(a) values of the yGrx1 and yGrx2 Cys27 residues are very similar, these parameters cannot account for the difference observed between their specific activities. Therefore, crystal structures of yGrx2 in the oxidized form and with a glutathionyl mixed disulfide were determined at resolutions of 2.05 and 1.91 A, respectively. Comparisons of yGrx2 structures with the recently determined structures of yGrx1 provided insights into their remarkable functional divergence. We hypothesize that the substitutions of Ser23 and Gln52 in yGrx1 by Ala23 and Glu52 in yGrx2 modify the capability of the active-site C-terminal cysteine to attack the mixed disulfide between the N-terminal active-site cysteine and the glutathione molecule. Mutagenesis studies supported this hypothesis. The observed structural and functional differences between yGrx1 and yGrx2 may reflect variations in substrate specificity.

摘要

谷氧还蛋白(Grxs)是一类广泛分布的小分子量(9 - 12 kDa)热稳定蛋白。在酿酒酵母中,已鉴定出七种Grx酶。其中两种(yGrx1和yGrx2)是二硫醇型的,具有保守的Cys - Pro - Tyr - Cys基序。在此,我们表明yGrx2的比活性比yGrx1高15倍,尽管这两种氧化还原酶的氨基酸序列具有64%的一致性和85%的相似性。通过双底物动力学分析对酶活性进行进一步表征发现,yGrx2对谷胱甘肽的K(M)值较低,周转数比yGrx1高。为了更好地理解这些生化差异,测定了这两种蛋白以及yGrx2 - C30S突变体N端活性位点半胱氨酸(Cys27)的pK(a)值。由于yGrx1和yGrx2 Cys27残基的pK(a)值非常相似,这些参数无法解释它们比活性之间观察到的差异。因此,分别以2.05 Å和1.91 Å的分辨率测定了氧化形式和谷胱甘肽混合二硫键形式的yGrx2晶体结构。将yGrx2结构与最近测定的yGrx1结构进行比较,为它们显著的功能差异提供了见解。我们推测,yGrx1中Ser23和Gln52被yGrx2中的Ala23和Glu52取代,改变了活性位点C端半胱氨酸攻击N端活性位点半胱氨酸与谷胱甘肽分子之间混合二硫键的能力。诱变研究支持了这一假设。yGrx1和yGrx2之间观察到的结构和功能差异可能反映了底物特异性的变化。

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