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首页> 外文期刊>Microbial Cell >Effect of paraquat-induced oxidative stress on gene expression and aging of the filamentous ascomycete Podospora anserina
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Effect of paraquat-induced oxidative stress on gene expression and aging of the filamentous ascomycete Podospora anserina

机译:百草枯引起的氧化应激对丝状子囊菌 Podospora anserina 基因表达和衰老的影响

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摘要

Aging of biological systems is influenced by various factors, conditions and processes. Among others, processes allowing organisms to deal with various types of stress are of key importance. In particular, oxidative stress as the result of the generation of reactive oxygen species (ROS) at the mitochondrial respiratory chain and the accumulation of ROS-induced molecular damage has been strongly linked to aging. Here we view the impact of ROS from a different angle: their role in the control of gene expression. We report a genome-wide transcriptome analysis of the fungal aging model Podospora anserina grown on medium containing paraquat (PQ). This treatment leads to an increased cellular generation and release of H2O2, a reduced growth rate, and a decrease in lifespan. The combined challenge by PQ and copper has a synergistic negative effect on growth and lifespan. The data from the transcriptome analysis of the wild type cultivated under PQ-stress and their comparison to those of a longitudinal aging study as well as of a copper-uptake longevity mutant of P. anserina revealed that PQ-stress leads to the up-regulation of transcripts coding for components involved in mitochondrial remodeling. PQ also affects the expression of copper-regulated genes suggesting an increase of cytoplasmic copper levels as it has been demonstrated earlier to occur during aging of P. anserina and during senescence of human fibroblasts. This effect may result from the induction of the mitochondrial permeability transition pore via PQ-induced ROS, leading to programmed cell death as part of an evolutionary conserved mechanism involved in biological aging and lifespan control.
机译:生物系统的老化受到各种因素,条件和过程的影响。尤其重要的是,允许有机体应对各种类型压力的过程至关重要。特别是,氧化应激是线粒体呼吸链上活性氧(ROS)生成的结果,以及ROS引起的分子损伤的积累与衰老密切相关。在这里,我们从不同的角度看待ROS的影响:ROS在基因表达控制中的作用。我们报告了生长在含有百草枯(PQ)的培养基上的真菌衰老模型Podospora anserina的全基因组转录组分析。这种治疗导致H 2 O 2 的细胞生成和释放增加,生长速率降低,寿命缩短。 PQ和铜的共同挑战对生长和寿命具有协同的负面影响。来自在PQ胁迫下培养的野生型的转录组分析数据以及与纵向衰老研究以及an背长寿铜吸收长寿突变体的转录组分析的比较数据表明,PQ胁迫导致上调编码线粒体重塑相关成分的转录本。 PQ还影响铜调控基因的表达,表明胞质铜水平的升高,因为早先已证明该现象发生在an浆虫的衰老和人成纤维细胞衰老期间。这种作用可能是由于通过PQ诱导的ROS诱导线粒体通透性过渡孔而导致的,导致程序性细胞死亡,这是参与生物衰老和寿命控制的进化保守机制的一部分。

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