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Spontaneous Emergence of Self-Replicating Molecules Containing Nucleobases and Amino Acids

机译:包含核碱基和氨基酸的自我复制分子的自发出现。

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摘要

The conditions that led to the formation of the first organisms and the ways that life originates from a lifeless chemical soup are poorly understood. The recent hypothesis of "RNA-peptide coevolution" suggests that the current close relationship between amino acids and nucleobases may well have extended to the origin of life. We now show how the interplay between these compound classes can give rise to new self-replicating molecules using a dynamic combinatorial approach. We report two strategies for the fabrication of chimeric amino aciducleobase self-replicating macrocycles capable of exponential growth. The first one relies on mixing nucleobase- and peptide-based building blocks, where the ligation of these two gives rise to highly specific chimeric ring structures. The second one starts from peptide nucleic acid (PNA) building blocks in which nucleobases are already linked to amino acids from the start. While previously reported nucleic acid-based self-replicating systems rely on presynthesis of (short) oligonucleotide sequences, self-replication in the present systems start from units containing only a single nucleobase. Self-replication is accompanied by self-assembly, spontaneously giving rise to an ordered one-dimensional arrangement of nucleobase nanostructures.
机译:人们对导致第一种生物形成的条件以及生命源自无生命化学汤的方式了解甚少。最近关于“ RNA-肽协同进化”的假说表明,氨基酸和核碱基之间的当前紧密关系很可能已经延伸到生命的起源。现在我们展示使用动态组合方法,这些化合物类别之间的相互作用如何产生新的自我复制分子。我们报告两种策略的嵌合氨基酸/核碱基自我复制大环的制造能够指数增长。第一个依赖于混合基于核碱基和肽的构件,这两个构件的连接产生高度特异性的嵌合环结构。第二个是从肽核酸(PNA)构件开始的,其中核碱基从一开始就已经与氨基酸连接。尽管先前报道的基于核酸的自我复制系统依赖于(短)寡核苷酸序列的预合成,但是本系统中的自我复制从仅包含单个核碱基的单元开始。自我复制伴随着自我组装,自发产生核碱基纳米结构的有序一维排列。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第9期|4184-4192|共9页
  • 作者

  • 作者单位

    Centre for Systems Chemistry Stratingh Institute University of Groningen 9747 AG Groningen The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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