Proceedings of the National Academy of Sciences · 2004 · 138 citations · 33 references
In this work, we introduce a prebiotically relevant protometabolic pattern corresponding to an engine of deracemization by using an external energy source. The spontaneous formation of a nonracemic mixture of chiral compounds can be observed in out-of-equilibrium systems via a symmetry-breaking phenomenon. This observation is possible thanks to chirally selective autocatalytic reactions (Frank's model) [Frank, F. C. (1953) Biochim. Biophys. Acta 11, 459-463]. We show that the use of a Frank-like model in a recycled system composed of reversible chemical reactions, rather than the classical irreversible system, allows for the emergence of a synergetic autoinduction from simple reactions, without any autocatalytic or even catalytic reaction. This model is described as a theoretical framework, based on the stereoselective reactivity of preexisting chiral monomeric building blocks (polymerization, epimerization, and depolymerization) maintained out of equilibrium by a continuous energy income, via an activation reaction. It permits the self-conversion of all monomeric subunits into a single chiral configuration. Real prebiotic systems of amino acid derivatives can be described on this basis. They are shown to be able to spontaneously reach a stable nonracemic state in a few centuries. In such systems, the presence of epimerization reactions is no more destructive, but in contrast is the central driving force of the unstabilization of the racemic state.
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Numerical Recipes in C: The Art of Scientific Computing.
Chris Birchenhall, William H. Press, Saul A. Teukolsky et al. · The Economic Journal · 1994 · 4.4K citations
Numerical Analysis, Second Edition, Numerical Computation +9
Enantiomeric Excesses in Meteoritic Amino Acids
John R. Cronin, Sandra Pizzarello · Science · 1997 · 857 citations
Prebiotic Amino Acids as Asymmetric Catalysts
Sandra Pizzarello, Arthur L. Weber · Science · 2004 · 377 citations