• Title of article

    Non-unity molecular heritability demonstrated by continuous evolution in vitro Original Research Article

  • Author/Authors

    Thomas Schmitt، نويسنده , , Niles Lehman، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 1999
  • Pages
    13
  • From page
    857
  • To page
    869
  • Abstract
    Introduction: When catalytic RNA is evolved in vitro, the moleculeʹs chemical reactivity is usually the desired selection target. Sometimes the phenotype of a particular RNA molecule cannot be unambiguously determined from its genotype, however. This can occur if a nucleotide sequence can adopt multiple folded states, an example of non-unity heritability (i.e. one genotype gives rise to more than one phenotype). In these cases, more rounds of selection are required to achieve a phenotypic shift. We tested the influence of non-unity heritability at the molecular level by selecting for variants of a ligase ribozyme via continuous evolution. Results: During 20 bursts of continuous evolution of a 152-nucleotide ligase ribozyme in which the Mg2+ concentration was periodically lowered, a nine-error variant of the starting ‘wild-type’ molecule became dominant in the last eight bursts. This variant appears to be more active than the wild type. Kinetic analyses of the mutant suggest that it may not possess a higher first-order catalytic rate constant, however. Examination of the multiple RNA conformations present under the continuous evolution conditions suggests that the mutant is superior to the wild type because it is less likely to misfold into inactive conformers. Conclusions: The evolution of genotypes that are more likely to exhibit a particular phenotype is an epiphenomenon usually ascribed only to complex living systems. We show that this can occur at the molecular level, demonstrating that in vitro systems may have more life-like characteristics than previously thought, and providing additional support for an RNA world.
  • Keywords
    * Folding , * in vitro selection , * heritability , * ribozymes , * RNA
  • Journal title
    Chemistry and Biology
  • Serial Year
    1999
  • Journal title
    Chemistry and Biology
  • Record number

    1158207