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Grx5 Glutaredoxin Plays a Central Role in Protection against Protein Oxidative Damage in Saccharomyces cerevisiae

机译:Grx5 Glutaredoxin在酿酒酵母中对蛋白质氧化损伤的保护中起着重要作用

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摘要

Glutaredoxins are members of a superfamily of thiol disulfide oxidoreductases involved in maintaining the redox state of target proteins. In Saccharomyces cerevisiae, two glutaredoxins (Grx1 and Grx2) containing a cysteine pair at the active site had been characterized as protecting yeast cells against oxidative damage. In this work, another subfamily of yeast glutaredoxins (Grx3, Grx4, and Grx5) that differs from the first in containing a single cysteine residue at the putative active site is described. This trait is also characteristic for a number of glutaredoxins from bacteria to humans, with which the Grx3/4/5 group has extensive homology over two regions. Mutants lacking Grx5 are partially deficient in growth in rich and minimal media and also highly sensitive to oxidative damage caused by menadione and hydrogen peroxide. A significant increase in total protein carbonyl content is constitutively observed in grx5 cells, and a number of specific proteins, including transketolase, appear to be highly oxidized in this mutant. The synthetic lethality of the grx5 and grx2 mutations on one hand and of grx5 with the grx3 grx4 combination on the other points to a complex functional relationship among yeast glutaredoxins, with Grx5 playing a specially important role in protection against oxidative stress both during ordinary growth conditions and after externally induced damage. Grx5-deficient mutants are also sensitive to osmotic stress, which indicates a relationship between the two types of stress in yeast cells.
机译:戊二醛是硫醇二硫键氧化还原酶超家族的成员,参与维持目标蛋白的氧化还原状态。在酿酒酵母中,在活性位点含有半胱氨酸对的两种谷胱甘肽毒素(Grx1和Grx2)的特征是可以保护酵母细胞免受氧化损伤。在这项工作中,描述了另一个与酵母戊二糖毒素有关的亚家族(Grx3,Grx4和Grx5),该亚家族不同于第一个亚家族,在假定的活性位点仅含有一个半胱氨酸残基。从细菌到人的多种戊二醛毒素也具有这一特征,Grx3 / 4/5组在两个区域具有广泛的同源性。缺少Grx5的突变体在丰富的基本培养基中缺乏部分生长,并且对甲萘醌和过氧化氢引起的氧化损伤高度敏感。在grx5细胞中可观察到总蛋白质羰基含量的显着增加,并且在此突变体中许多特定的蛋白质(包括转酮醇酶)似乎被高度氧化。一方面,grx5和grx2突变的综合杀伤力,另一方面,与grx3 grx4组合的grx5的综合杀伤力表明酵母戊二醛毒素之间具有复杂的功能关系,在正常的生长条件下,Grx5在抵抗氧化应激方面起着特别重要的作用。以及外部造成的损害之后。缺乏Grx5的突变体也对渗透压敏感,这表明酵母细胞中两种类型的压力之间存在关系。

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