Hybridization kinetics of out-of-equilibrium mixtures of short RNA oligonucleotides

Author:

Todisco Marco12ORCID,Szostak Jack W123

Affiliation:

1. Howard Hughes Medical Institute, Department of Molecular Biology and Center for Computational and Integrative Biology, Massachusetts General Hospital , 185 Cambridge Street, Boston, MA 02114, USA

2. Department of Genetics, Harvard Medical School , 77 Avenue Louis Pasteur, Boston, MA 02115, USA

3. Department of Chemistry and Chemical Biology, Harvard University , 12 Oxford Street, Cambridge, MA 02138, USA

Abstract

Abstract Hybridization and strand displacement kinetics determine the evolution of the base paired configurations of mixtures of oligonucleotides over time. Although much attention has been focused on the thermodynamics of DNA and RNA base pairing in the scientific literature, much less work has been done on the time dependence of interactions involving multiple strands, especially in RNA. Here we provide a study of oligoribonucleotide interaction kinetics and show that it is possible to calculate the association, dissociation and strand displacement rates displayed by short oligonucleotides (5nt–12nt) that exhibit no expected secondary structure as simple functions of oligonucleotide length, CG content, ΔG of hybridization and ΔG of toehold binding. We then show that the resultant calculated kinetic parameters are consistent with the experimentally observed time dependent changes in concentrations of the different species present in mixtures of multiple competing RNA strands. We show that by changing the mixture composition, it is possible to create and tune kinetic traps that extend by orders of magnitude the typical sub-second hybridization timescale of two complementary oligonucleotides. We suggest that the slow equilibration of complex oligonucleotide mixtures may have facilitated the nonenzymatic replication of RNA during the origin of life.

Funder

National Science Foundation

Simons Foundation

Howard Hughes Medical Institute

Publisher

Oxford University Press (OUP)

Subject

Genetics

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