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首页> 外文期刊>Angewandte Chemie >Prebiotic Phosphorylation and Concomitant Oligomerization of Deoxynucleosides to form DNA
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Prebiotic Phosphorylation and Concomitant Oligomerization of Deoxynucleosides to form DNA

机译:脱氧核苷的益生元磷酸化和伴随的寡聚化形成DNA

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摘要

Recent demonstrations of RNA-DNA chimeras (RDNA) enabling RNA and DNA replication, coupled with prebiotic co-synthesis of deoxyribo- and ribo-nucleotides, have resurrected the hypothesis of co-emergence of RNA and DNA. As further support, we show that diamidophosphate (DAP) with 2-aminoimidazole (amido)phosphorylates and oligomerizes deoxynucleosides to form DNA-under conditions similar to those of ribonucleosides. The pyrimidine deoxynucleoside 5 '-O-amidophosphates are formed in good (approximate to 60 %) yields. Intriguingly, the presence of pyrimidine deoxynucleos(t)ides increased the yields of purine deoxynucleotides (approximate to 20 %). Concomitantly, oligomerization (approximate to 18-31 %) is observed with predominantly 3 ',5 '-phosphodiester DNA linkages, and some (<5 %) pyrophosphates. Combined with previous observations of DAP-mediated chemistries and the constructive role of RDNA chimeras, the results reported here help set the stage for systematic investigation of a systems chemistry approach of RNA-DNA coevolution.
机译:最近,RNA-DNA嵌合体(RDNA)使RNA和DNA复制,再加上脱氧核糖和核糖核苷酸的益生元共合成的证明,重新提出了RNA和DNA共现的假说。作为进一步的支持,我们证明了二氨基磷酸(DAP)与2-氨基咪唑(氨基)在类似于核糖核苷的条件下磷酸化和寡聚脱氧核苷形成DNA。嘧啶脱氧核苷5'-O-酰胺磷酸酯的产率高(约60%)。有趣的是,嘧啶脱氧核苷酸(t)的存在增加了嘌呤脱氧核苷酸的产量(约20%)。同时,观察到寡聚(约18-31%)主要是3',5'-磷酸二酯DNA键和一些(<5%)焦磷酸盐。结合之前对DAP介导的化学反应的观察和RDNA嵌合体的构建作用,本文报告的结果有助于为系统研究RNA-DNA协同进化的系统化学方法奠定基础。

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