Scinovex
articleTop 10% cited

Thermodynamic Parameters for an Expanded Nearest-Neighbor Model for Formation of RNA Duplexes with Watson−Crick Base Pairs

Biochemistry · 1998 · Vol. 37(42) · pp. 14719–14735
Tianbing XiaJohn SantaLuciaMark E. BurkardRyszard KierzekSusan J. SchroederXiaoqi JiaoChristopher CoxDouglas H. Turner

Abstract

Improved thermodynamic parameters for prediction of RNA duplex formation are derived from optical melting studies of 90 oligoribonucleotide duplexes containing only Watson−Crick base pairs. To test end or base composition effects, new sets of duplexes are included that have identical nearest neighbors, but different base compositions and therefore different ends. Duplexes with terminal GC pairs are more stable than duplexes with the same nearest neighbors but terminal AU pairs. Penalizing terminal AU base pairs by 0.45 kcal/mol relative to terminal GC base pairs significantly improves predictions of ΔG°37 from a nearest-neighbor model. A physical model is suggested in which the differential treatment of AU and GC ends accounts for the dependence of the total number of Watson−Crick hydrogen bonds on the base composition of a duplex. On average, the new parameters predict ΔG°37, ΔH°, ΔS°, and T M within 3.2%, 6.0%, 6.8%, and 1.3 °C, respectively. These predictions are within the limit of the model, based on experimental results for duplexes predicted to have identical thermodynamic parameters.

DNA and Nucleic Acid ChemistryRNA and protein synthesis mechanismsBacteriophages and microbial interactionsDuplex (building)Base pairMolecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic Acidk-nearest neighbors algorithmChemistryBase (topology)RNAThermodynamicsCrystallographyDNA

Funding

  • Francis Crick Institute
Citations
1,156
FWCI
5.04
field-weighted impact
References
95
Percentile
96%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.