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首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Inhibition of free radical scavenging enzymes affects mitochondrial membrane permeability transition during growth and aging of yeast cells
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Inhibition of free radical scavenging enzymes affects mitochondrial membrane permeability transition during growth and aging of yeast cells

机译:抑制自由基清除酶影响酵母细胞生长和衰老过程中线粒体膜通透性的转变

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In this study, we investigated the change in the antioxidant enzymes activity, cell respiration, reactive oxygen species (ROS), and impairment of membrane mitochondria permeability in the Endomyces magnusii yeasts during culture growth and aging. We showed that the transition into stationary phase is the key tool to understanding interaction of these processes. This growth stage is distinguished by two-fold increase in ROS production and respiration rate as compared to those in the logarithmic phase. It results in induction of alternative oxidase (AO) in the stationary phase, decline of the main antioxidant enzymes activities, ROS-production, and mitochondria membrane permeability. Significant increase in the share of mitochondrial isoform of superoxide dismutase(SOD2) occurred in the stationary phase from 51.8 % (24 h of cultivation) to 68.6 % (48 h of cultivation). Upon blocking the essential ROS-scavenging enzymes, SODs and catalases (CATs) some heterogeneity of cell population was observed: 80-90 % of cells displayed evident signs of early apoptosis (such as disorientation of mitochondria cristae, mitochondrial fragmentation and deformation of nuclear chromatine). However, 10-20 % of the population were definitely healthy. It allowed to draw the conclusion that a complete system of cell antioxidant protection underlies normal mitochondria functioning while the E. magnusii yeasts grow and age. Moreover, this system provides unimpaired cell physiology under oxidative stress during culture aging in the stationary phase. Failures in mitochondria functions due to inhibition of ROS-scavenging enzymes of CATs and SODs could lead to damage of the cells and some signs of early apoptosis.
机译:在这项研究中,我们调查了在培养生长和衰老过程中,大型内生酵母中抗氧化酶活性,细胞呼吸,活性氧(ROS)和膜线粒体通透性的变化。我们表明,过渡到固定阶段是了解这些过程之间相互作用的关键工具。与对数生长期相比,该生长期的特征是ROS产量和呼吸速率增加了两倍。它导致在固定相中诱导替代氧化酶(AO),降低主要抗氧化酶活性,产生ROS和线粒体膜通透性。在固定相中,超氧化物歧化酶(SOD2)的线粒体同工型的份额显着增加,从51.8%(培养24小时)增加到68.6%(培养48小时)。阻断基本的ROS清除酶,SOD和过氧化氢酶(CAT)后,观察到了细胞群体的异质性:80-90%的细胞显示出早期凋亡的明显迹象(例如线粒体的ista裂,线粒体断裂和核染色质变形) )。但是,肯定有10-20%的人口健康。它可以得出这样的结论,即完整的细胞抗氧化剂保护系统是正常的线粒体功能的基础,而大肠埃希氏菌则在生长和老化。而且,该系统在固定相培养老化期间的氧化应激下提供了不受损害的细胞生理学。由于抑制了CAT和SOD的ROS清除酶,导致线粒体功能衰竭可能导致细胞损伤和早期凋亡的迹象。

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