In yeast redistribution of Sod1 to the mitochondrial intermembrane space provides protection against respiration derived oxidative stress

被引:32
|
作者
Kloeppel, Christine [1 ]
Michels, Christine [1 ]
Zimmer, Julia [1 ]
Herrmann, Johannes M. [1 ]
Riemer, Jan [1 ]
机构
[1] Univ Kaiserslautern, D-67663 Kaiserslautern, Germany
关键词
Mitochondria; Reactive oxygen species; Sod1; Oxidative stress; Yeast; AMYOTROPHIC-LATERAL-SCLEROSIS; CU; ZN SUPEROXIDE-DISMUTASE; OXYGEN SPECIES PRODUCTION; RAT-LIVER; PROTEINS; DAMAGE; MANGANESE; PARAQUAT; MUTANTS; CUZNSOD;
D O I
10.1016/j.bbrc.2010.10.129
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The antioxidative enzyme copper-zinc superoxide dismutase (Sod1) is an important cellular defence system against reactive oxygen species (ROS). While the majority of this enzyme is localized to the cytosol, about 1% of the cellular Sod1 is present in the intermembrane space (IMS) of mitochondria. These amounts of mitochondrial Sod1 are increased for certain Sod1 mutants that are linked to the neurodegenerative disease amyotrophic lateral sclerosis (ALS). To date, only little is known about the physiological function of mitochondrial Sod1. Here, we use the model system Saccharomyces cerevisiae to generate cells in which Sod1 is exclusively localized to the IMS. We find that IMS-localized Sod1 can functionally substitute wild type Sod1 and that it even exceeds the protective capacity of wild type Sod1 under conditions of mitochondrial ROS stress. Moreover, we demonstrate that upon expression in yeast cells the common ALS-linked mutant Sod1(G93A) becomes enriched in the mitochondrial fraction and provides an increased protection of cells from mitochondrial oxidative stress. Such an effect cannot be observed for the catalytically inactive mutant Sod1(G85R). Our observations suggest that the targeting of Sod1 to the mitochondrial IMS provides an increased protection against respiration-derived ROS. (C) 2010 Elsevier Inc. All rights reserved.
引用
收藏
页码:114 / 119
页数:6
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