
The dissociation kinetics of 19 base paired oligonucleotide-DNA duplex containing a various single mismatched base pair are studied on dried agarose gels. The kinetics of the dissociation are first order under our experimental conditions. The incorporation of a single mismatched base pair destabilizes the DNA duplexes to some extent, the amount depending on the nature of the mismatched base pair. G-T and G-A mismatches slightly destabilize a duplex, while A-A, T-T, C-T and C-A mismatches significantly destabilize it. The activation energy for the overall dissociation processes for these oligonucleotide-DNA duplexes containing 19 base pairs is 52 +/- 2 Kcal mol-1 as determined from the slope of Arrhenius plot.
Base Composition, Kinetics, Genes, Oligodeoxyribonucleotides, Humans, Nucleic Acid Hybridization, Thermodynamics, DNA, Globins, Plasmids
Base Composition, Kinetics, Genes, Oligodeoxyribonucleotides, Humans, Nucleic Acid Hybridization, Thermodynamics, DNA, Globins, Plasmids
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