首页> 外文期刊>The FEBS journal >Yeast oxidative stress response - Influences of cytosolic thioredoxin peroxidase I and of the mitochondrial functional state
【24h】

Yeast oxidative stress response - Influences of cytosolic thioredoxin peroxidase I and of the mitochondrial functional state

机译:酵母氧化应激反应-胞质硫氧还蛋白过氧化物酶I和线粒体功能状态的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We investigated the changes in the oxidative stress response of yeast cells suffering mitochondrial dysfunction that could impair their viability. First, we demonstrated that cells with this dysfunction rely exclusively on cytosolic thioredoxin peroxidase I (cTPxI) and its reductant sulfiredoxin, among other antioxidant enzymes tested, to protect them against H2O2-induced death. This cTPxI-dependent protection could be related to its dual functions, as peroxidase and as molecular chaperone, suggested by mixtures of low and high molecular weight oligomeric structures of cTPxI observed in cells challenged with H2O2. We found that cTPxI deficiency leads to increased basal sulfhydryl levels and transcriptional activation of most of the H2O2-responsive genes, interpreted as an attempt by the cells to improve their antioxidant defense. On the other hand, mitochondrial dysfunction, specifically the electron transport blockage, provoked a huge depletion of sulfhydryl groups after H2O2 treatment and reduced the H2O2-mediated activation of some genes otherwise observed, impairing cell defense and viability. The transcription factors Yap1 and Skn7 are crucial for the antioxidant response of cells under inhibited electron flow condition and probably act in the same pathway of cTPxI to protect cells affected by this disorder. Yap1 cellular distribution was not affected by cTpxI deficiency and by mitochondrial dysfunction, in spite of the observed expression alterations of several Yap1-target genes, indicating alternative mechanisms of Yap1 activation/deactivation. Therefore, we propose that cTPxI is specifically important in the protection of yeast with mitochondrial dysfunction due to its functional versatility as an antioxidant, chaperone and modulator of gene expression.
机译:我们调查了遭受线粒体功能障碍的酵母细胞的氧化应激反应的变化,这可能会损害其生存能力。首先,我们证明了具有这种功能障碍的细胞仅依赖于胞质硫氧还蛋白过氧化物酶I(cTPxI)及其还原性磺基还原酶以及其他经过测试的抗氧化酶来保护其免受H2O2诱导的死亡。这种cTPxI依赖性保护作用可能与它的双重功能有关,如过氧化物酶和分子伴侣,这是在受H2O2攻击的细胞中观察到的cTPxI低分子量和高分子量寡聚结构混合物的暗示。我们发现cTPxI缺乏导致基础巯基水平增加和大多数H2O2响应基因的转录激活,这被解释为细胞试图改善其抗氧化防御能力的尝试。另一方面,线粒体功能障碍,特别是电子传递障碍,在H2O2处理后引起了巯基的大量消耗,并降低了H2O2介导的某些其他基因的激活,从而损害了细胞防御和生存能力。转录因子Yap1和Skn7对于在受抑制的电子流动条件下细胞的抗氧化反应至关重要,并且可能在cTPxI的同一途径中起作用以保护受此疾病影响的细胞。 Yap1细胞分布不受cTpxI缺乏和线粒体功能障碍的影响,尽管观察到了一些Yap1靶基因的表达变化,表明Yap1激活/失活的其他机制。因此,我们建议cTPxI在保护具有线粒体功能障碍的酵母中特别重要,因为它具有作为抗氧化剂,分子伴侣和基因表达调节剂的功能通用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号