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Divergent prebiotic synthesis of pyrimidine and 8-oxo-purine ribonucleotides

Author

Listed:
  • Shaun Stairs

    (University College London)

  • Arif Nikmal

    (University College London)

  • Dejan-Krešimir Bučar

    (University College London)

  • Shao-Liang Zheng

    (Harvard University)

  • Jack W. Szostak

    (Harvard University
    Howard Hughes Medical Institute, Massachusetts General Hospital)

  • Matthew W. Powner

    (University College London)

Abstract

Understanding prebiotic nucleotide synthesis is a long standing challenge thought to be essential to elucidating the origins of life on Earth. Recently, remarkable progress has been made, but to date all proposed syntheses account separately for the pyrimidine and purine ribonucleotides; no divergent synthesis from common precursors has been proposed. Moreover, the prebiotic syntheses of pyrimidine and purine nucleotides that have been demonstrated operate under mutually incompatible conditions. Here, we tackle this mutual incompatibility by recognizing that the 8-oxo-purines share an underlying generational parity with the pyrimidine nucleotides. We present a divergent synthesis of pyrimidine and 8-oxo-purine nucleotides starting from a common prebiotic precursor that yields the β-ribo-stereochemistry found in the sugar phosphate backbone of biological nucleic acids. The generational relationship between pyrimidine and 8-oxo-purine nucleotides suggests that 8-oxo-purine ribonucleotides may have played a key role in primordial nucleic acids prior to the emergence of the canonical nucleotides of biology.

Suggested Citation

  • Shaun Stairs & Arif Nikmal & Dejan-Krešimir Bučar & Shao-Liang Zheng & Jack W. Szostak & Matthew W. Powner, 2017. "Divergent prebiotic synthesis of pyrimidine and 8-oxo-purine ribonucleotides," Nature Communications, Nature, vol. 8(1), pages 1-12, August.
  • Handle: RePEc:nat:natcom:v:8:y:2017:i:1:d:10.1038_ncomms15270
    DOI: 10.1038/ncomms15270
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