• Title of article

    Phosphates, DNA, and the Search for Nonterrean Life: A Second Generation Model for Genetic Molecules

  • Author/Authors

    Benner، نويسنده , , Steven A. and Hutter، نويسنده , , Daniel، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2002
  • Pages
    19
  • From page
    62
  • To page
    80
  • Abstract
    Phosphate groups are found and used widely in biological chemistry. We have asked whether phosphate groups are likely to be important to the functioning of genetic molecules, including DNA and RNA. From observations made on synthetic analogs of DNA and RNA where the phosphates are replaced by nonanionic linking groups, we infer a set of rules that highlight the importance of the phosphodiester backbone for the proper functioning of DNA as a genetic molecule. The polyanionic backbone appears to give DNA the capability of replication following simple rules, and evolving. The polyanionic nature of the backbone appears to be critical to prevent the single strands from folding, permitting them to act as templates, guiding the interaction between two strands to form a duplex in a way that permits simple rules to guide the molecular recognition event, and buffering the sensitivity of its physicochemical properties to changes in sequence. We argue that the feature of a polyelectrolyte (polyanion or polycation) may be required for a “self-sustaining chemical system capable of Darwinian evolution.” The polyelectrolyte structure therefore may be a universal signature of life, regardless of its genesis, and unique to living forms as well.
  • Keywords
    phosphate-backbone , Polyelectrolyte , nonterrean life. , PNA , Sulfone , genetic molecule
  • Journal title
    Bioorganic Chemistry: an International Journal
  • Serial Year
    2002
  • Journal title
    Bioorganic Chemistry: an International Journal
  • Record number

    1385472