Predicting DNA duplex stability from the base sequence.
- 1 June 1986
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 83 (11) , 3746-3750
- https://doi.org/10.1073/pnas.83.11.3746
Abstract
We report the complete thermodynamic library of all 10 Watson-Crick DNA nearest-neighbor interactions. We obtained the relevant thermodynamic data from calorimetric studies on 19 DNA oligomers and 9 DNA polymers. We show how these thermodynamic data can be used to calculate the stability and predict the temperature-dependent behavior of any DNA duplex structure from knowledge of its base sequence. We illustrate our method of calculation by using the nearest-neighbor data to predict transition enthalpies and free energies for a series of DNA oligomers. These predicted values are in excellent agreement with the corresponding values determined experimentally. This agreement demonstrates that a DNA duplex structure thermodynamically can be considered to be the sum of its nearest-neighbor interactions. Armed with this knowledge and the nearest-neighbor thermodynamic data reported here, scientists now will be able to predict the stability (delta G degree) and the melting behavior (delta H degree) of any DNA duplex structure from inspection of its primary sequence. This capability should prove valuable in numerous applications, such as predicting the stability of a probe-gene complex; selecting optimal conditions for a hybridization experiment; deciding on the minimum length of a probe; predicting the influence of a specific transversion or transition on the stability of an affected DNA region; and predicting the relative stabilities of local domains within a DNA duplex.Keywords
This publication has 27 references indexed in Scilit:
- Calorimetric determination of base‐stacking enthalpies in double‐helical DNA moleculesBiopolymers, 1982
- Premelting and melting transitions in the d(CGCGAATTCGCG) self-complementary duplex in solutionBiochemistry, 1982
- Structure and energetics of a hexanucleotide duplex with stacked trinucleotide ends formed by the sequence d(GAATTCGCG)Biochemistry, 1982
- DNA and RNA oligomer thermodynamics: The effect of mismatched bases on double‐helix stabilityBiopolymers, 1981
- Effect of tetramethylammonium ion on the helix-to-coil transition of poly(deoxyadenylylthymidine): a nuclear magnetic resonance and calorimetric investigationBiochemistry, 1981
- DNA sequences and structural homologies of the replication origins of lambdoid bacteriophagesNature, 1979
- Calorimetric and spectroscopic investigation of the helix-to-coil transition of a ribo-oligonucleotide: rA7U7Journal of Molecular Biology, 1975
- Stability of RNA hairpin loops: A6-Cm-U6Journal of Molecular Biology, 1973
- Physicochemical studies on polydeoxyribonucleotides containing defined repeating nucleotide sequencesJournal of Molecular Biology, 1970
- Theory of the melting transition of synthetic polynucleotides: Evaluation of the stacking free energyJournal of Molecular Biology, 1964