Department of Molecular and Cell Biology, Campus da Zapateira s/n, University of A Coruña, Spain.
Yeast. 2010 Jul;27(7):431-41. doi: 10.1002/yea.1760.
Glutathione reductase (GLR) null mutants of the yeast Kluyveromyces lactis, a model eukaryotic respiratory cell, were created and phenotypically analysed. We found that cells lacking GLR show decreased resistance to oxidative stress and higher levels of reactive oxygen species and catalase activity than the wild-type strain. However, glutathione redox levels (GSH : GSSG ratio) were similar in the DeltaKlglr1 mutant and wild-type strains. The thioredoxin-thioredoxin reductase system is proposed as an alternative system for maintaining the GSH : GSSG ratio in the DeltaKlglr1 mutant. The involvement of GLR in glucose metabolism in K. lactis is suggested by the improved growth on glucose caused by the DeltaKlglr1 mutation and by the increased GLR activity in the DeltaKlgcr1 strain, KlGcr1 being a transcriptional activator of glycolytic genes. We also studied the subcellular location of GLR in K. lactis, showing that it is present in mitochondria; however, the DeltaKlglr1 mutation does not affect mitochondrial morphology. Genomic DNA integrity and life span are also unaffected by the DeltaKlglr1 mutation, at least under the conditions tested in this study.
已建立酵母克鲁维酵母 Kluyveromyces lactis(一种模型真核呼吸细胞)的谷胱甘肽还原酶 (GLR) 缺失突变体,并对其表型进行了分析。我们发现,与野生型菌株相比,缺乏 GLR 的细胞对氧化应激的抵抗力降低,活性氧水平和过氧化氢酶活性更高。然而,DeltaKlglr1 突变体和野生型菌株的谷胱甘肽氧化还原水平(GSH:GSSG 比值)相似。拟南芥硫氧还蛋白-硫氧还蛋白还原酶系统被认为是维持 DeltaKlglr1 突变体中 GSH:GSSG 比值的替代系统。GLR 参与克鲁维酵母 Kluyveromyces lactis 的葡萄糖代谢,这是由 DeltaKlglr1 突变导致的葡萄糖生长改善和 DeltaKlgcr1 菌株中 GLR 活性增加所表明的,KlGcr1 是糖酵解基因的转录激活因子。我们还研究了 GLR 在克鲁维酵母 Kluyveromyces lactis 中的亚细胞定位,表明它存在于线粒体中;然而,DeltaKlglr1 突变不会影响线粒体形态。至少在本研究测试的条件下,基因组 DNA 完整性和寿命不受 DeltaKlglr1 突变的影响。