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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >RNA decomposition by pyrite-induced radicals and possible role of lipids during the emergence of life
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RNA decomposition by pyrite-induced radicals and possible role of lipids during the emergence of life

机译:黄铁矿诱导的自由基分解RNA以及脂质在生命出现过程中的可能作用

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摘要

Generation of radical species (e.g., hydroxyl radical (OH)-O-.) by silicates is well documented, and it has been shown that these radicals can readily destroy biomolecules. While quartz and asbestos have received considerable attention, pyrite (FeS2), the most abundant iron sulfide, has received almost no attention in this context. Batch experiments were performed to determine the effects of pyrite-induced .OH on RNA in the presence and absence of lipids. The effect of the presence of lipids on RNA stability was evaluated by coating pyrite as well as encapsulating RNA in bilayer-vesicles. Rapid degradation of RNA was observed in the presence of pyrite, whereas significantly slower RNA decomposition was observed in experiments in the presence of lipids, regardless of whether the lipids were coating the pyrite or encapsulating the RNA. Given the presence of pyrite on early Earth, its reaction with water may have formed hydroxyl radicals (.OH), which could have limited the stability of prebiotic biomolecules critical to the emergence and evolution of life. The lipid-mediated reduction of RNA decomposition suggests a possible protective mechanism that could have been a prerequisite for the origin of life. (C) 2004 Elsevier B.V. All rights reserved.
机译:硅酸盐产生自由基物质(例如,羟基自由基(OH)-O-。)已被充分证明,并且已表明这些自由基可轻易破坏生物分子。虽然石英和石棉受到了相当大的关注,但在这种情况下,最丰富的硫化铁黄铁矿(FeS2)几乎没有受到关注。进行批处理实验以确定在有无脂质存在下黄铁矿诱导的.OH对RNA的影响。通过包被黄铁矿以及将RNA包封在双层囊泡中来评估脂质存在对RNA稳定性的影响。在黄铁矿存在下观察到RNA的快速降解,而在脂质存在下进行的实验中观察到RNA分解的速度明显减慢,无论脂质是覆盖黄铁矿还是包裹RNA。考虑到黄铁矿在地球早期的存在,其与水的反应可能形成了羟基自由基(.OH),这可能会限制对于生命的出现和进化至关重要的益生元生物分子的稳定性。脂质介导的RNA分解减少表明可能存在保护机制,这可能是生命起源的先决条件。 (C)2004 Elsevier B.V.保留所有权利。

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