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Oxidative Stress in Bacteria and the Central Dogma of Molecular Biology

机译:细菌中的氧化胁迫和分子生物学的中央教条

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Ever since the “great oxidation event”, Earth's cellular life forms had to cope with the danger of reactive oxygen species (ROS) affecting the integrity of biomolecules and hampering cellular metabolism circuits. Consequently, increasing ROS levels in the biosphere represented growing stress levels and thus shaped the evolution of species. Whether the ROS were produced endogenously or exogenously, different systems developed to remove the ROS and repair the damage they inflicted. If ROS outweigh the cell's capacity to remove the threat, we speak of oxidative stress. The injuries through oxidative stress in cells are diverse. This article reviews the damage oxidative stress imposes on the different steps of the central dogma of molecular biology in bacteria, focusing in particular on the RNA machines involved in transcription and translation.
机译:自从“巨大氧化事件”以来,地球的细胞生命形式不得不应对影响生物分子完整性和阻碍细胞代谢电路的反应性氧物种(ROS)的危险。 因此,增加生物圈中的ROS水平代表了生长的应力水平,从而形成了物种的演变。 无论ROS是内源性还是外源生产,不同的系统都为消除了ROS并修复了他们造成的损害。 如果ROS超过细胞去除威胁的能力,我们会谈论氧化应激。 细胞中氧化应激的损伤是多种多样的。 本文审查了氧化应激对细菌中分子生物学中央教条的不同步骤,特别是在参与转录和翻译的RNA机器上。

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