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Harnessing chemical energy for the activation and joining of prebiotic building blocks.

机译:利用化学能量的益生元构建块的激活和加入。

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摘要

Life is an out-of-equilibrium system sustained by a continuous supply of energy. In extant biology, the generation of the primary energy currency, adenosine 5'-triphosphate and its use in the synthesis of biomolecules require enzymes. Before their emergence, alternative energy sources, perhaps assisted by simple catalysts, must have mediated the activation of carboxylates and phosphates for condensation reactions. Here, we show that the chemical energy inherent to isonitriles can be harnessed to activate nucleoside phosphates and carboxylic acids through catalysis by acid and 4,5-dicyanoimidazole under mild aqueous conditions. Simultaneous activation of carboxylates and phosphates provides multiple pathways for the generation of reactive intermediates, including mixed carboxylic acid-phosphoric acid anhydrides, for the synthesis of peptidyl-RNAs, peptides, RNA oligomers and primordial phospholipids. Our results indicate that unified prebiotic activation chemistry could have enabled the joining of building blocks in aqueous solution from a common pool and enabled the progression of a system towards higher complexity, foreshadowing today's encapsulated peptide-nucleic acid system.
机译:生活是通过连续的能量供应持续的均衡系统。在现存生物学中,发电主要能量货币,腺苷5'-三磷酸盐及其在合成生物分子中需要酶。在其出现之前,替代能源,也许通过简单催化剂的辅助,必须介导羧酸盐和磷酸盐的激活以进行缩合反应。在这里,我们表明,可以利用异腈固有的化学能,通过酸和4,5-二氰基咪唑在温和的水性条件下激活核苷磷酸酯和羧酸。同时激活羧酸盐和磷酸盐为产生的反应性中间体提供多种途径,包括混合羧酸 - 磷酸酸酐,用于合成肽基-RNA,肽,RNA低聚物和原始磷脂。我们的研究结果表明,统一的益生菌活化化学可以使建筑物在来自公共池中的水溶液中的连接,并使系统进展朝向更高的复杂性,预示着今天的包封肽 - 核酸系统。

著录项

  • 来源
    《Nature Chemistry》 |2020年第11期|共6页
  • 作者单位

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

    MRC Laboratory of Molecular Biology Cambridge Biomedical Campus;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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