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The Impact of Oxygen on Metabolic Evolution: A Chemoinformatic Investigation

机译:氧气对代谢进化的影响:化学信息学研究

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摘要

The appearance of planetary oxygen likely transformed the chemical and biochemical makeup of life and probably triggered episodes of organismal diversification. Here we use chemoinformatic methods to explore the impact of the rise of oxygen on metabolic evolution. We undertake a comprehensive comparative analysis of structures, chemical properties and chemical reactions of anaerobic and aerobic metabolites. The results indicate that aerobic metabolism has expanded the structural and chemical space of metabolites considerably, including the appearance of 130 novel molecular scaffolds. The molecular functions of these metabolites are mainly associated with derived aspects of cellular life, such as signal transfer, defense against biotic factors, and protection of organisms from oxidation. Moreover, aerobic metabolites are more hydrophobic and rigid than anaerobic compounds, suggesting they are better fit to modulate membrane functions and to serve as transmembrane signaling factors. Since higher organisms depend largely on sophisticated membrane-enabled functions and intercellular signaling systems, the metabolic developments brought about by oxygen benefit the diversity of cellular makeup and the complexity of cellular organization as well. These findings enhance our understanding of the molecular link between oxygen and evolution. They also show the significance of chemoinformatics in addressing basic biological questions.
机译:行星氧的出现可能改变了生命的化学和生化组成,并可能触发了生物多样化的发作。在这里,我们使用化学信息学的方法来探索氧气上升对代谢进化的影响。我们对厌氧和好氧代谢物的结构,化学性质和化学反应进行全面的比较分析。结果表明,有氧代谢极大地扩展了代谢产物的结构和化学空间,包括130种新型分子支架的出现。这些代谢物的分子功能主要与细胞生命的衍生方面有关,例如信号传递,对生物因子的防御以及对生物体的氧化保护。此外,好氧代谢产物比厌氧化合物更疏水和更坚硬,表明它们更适合调节膜功能并充当跨膜信号传导因子。由于高等生物主要依赖复杂的膜功能和细胞间信号系统,因此氧气带来的代谢发展有益于细胞组成的多样性和细胞组织的复杂性。这些发现增强了我们对氧与析出之间的分子联系的理解。他们还显示了化学信息学在解决基本生物学问题中的重要性。

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