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Unraveling the mechanisms of extreme radioresistance in prokaryotes: Lessons from nature

机译:揭示原核生物中极端抗辐射的机制:自然的教训

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The last 50 years, a variety of archaea and bacteria able to withstand extremely high doses of ionizing radiation, have been discovered. Several lines of evidence suggest a variety of mechanisms explaining the extreme radioresistance of microorganisms found usually in isolated environments on Earth. These findings are discussed thoroughly in this study. Although none of the strategies discussed here, appear to be universal against ionizing radiation, a general trend was found. There are two cellular mechanisms by which radioresistance is achieved: (a) protection of the proteome and DNA from damage induced by ionizing radiation and (b) recruitment of advanced and highly sophisticated DNA repair mechanisms, in order to reconstruct a fully functional genome. In this review, we critically discuss various protecting (antioxidant enzymes, presence or absence of certain elements, high metal ion or salt concentration etc.) and repair (Homologous Recombination, Single-Strand Annealing, Extended Synthesis-Dependent Strand Annealing) mechanisms that have been proposed to account for the extraordinary abilities of radioresistant organisms and the homologous radioresistance signature genes in these organisms. In addition, and based on structural comparative analysis of major radioresistant organisms, we suggest future directions and how humans could innately improve their resistance to radiation-induced toxicity, based on this knowledge. (C) 2015 Elsevier B.V. All rights reserved.
机译:在最近的50年中,已经发现了各种能够承受极高剂量电离辐射的古细菌和细菌。有几条证据表明,多种机制可以解释通常在地球上孤立的环境中发现的微生物的极强抗辐射性。这些发现在本研究中进行了详细讨论。尽管此处讨论的策略均未针对电离辐射通用,但已发现了总体趋势。可以通过两种细胞机制实现放射抗性:(a)保护蛋白质组和DNA免受电离辐射诱导的损害,以及(b)募集先进且高度复杂的DNA修复机制,以重建功能齐全的基因组。在这篇综述中,我们批判性地讨论了各种保护(抗氧化酶,某些元素的存在与否,高金属离子或盐浓度等)和修复(同源重组,单链退火,扩展合成依赖链退火)机制。有人提出将其解释为抗辐射生物的非凡能力以及这些生物中的同源抗辐射标记基因。此外,基于对主要耐辐射生物的结构比较分析,我们基于此知识提出了未来的方向以及人类如何固有地提高其对辐射诱发的毒性的抵抗力。 (C)2015 Elsevier B.V.保留所有权利。

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