Dedicated to Professor Dieter Seebach on the occasion of his 65th birthday Oligonucleotides containing a phenanthrene-derived, non-nucleosidic building block with flexible linkers were synthesized. The effect of the phenanthrene moiety on duplex stability at different positions was investigated. Pla
On the Nature of DNA-Duplex Stability
✍ Scribed by Jan Řezáč; Pavel Hobza
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 169 KB
- Volume
- 13
- Category
- Article
- ISSN
- 0947-6539
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The unwinding free energy of 128 DNA octamers was correlated with the sum of interaction energies among DNA bases and their solvation energies. The former energies were determined by using the recently developed density functional theory procedure augmented by London dispersion energy (RI‐DFT‐D) that provides accurate hydrogen‐bonding and stacking energies highly comparable with CCSD(T)/complete basis set limit benchmark data. Efficient tight‐binding DFT covering dispersion energy was also used and yielded satisfactory results. The latter method can be used for extended systems. The solvation energy was determined by using a C‐PCM continuum solvent at HF level calculations. Various models were adopted to correlate theoretical energies with experimental unwinding free energies. Unless all energy components (hydrogen‐bonding, intra‐ and interstrand‐stacking, and solvation energies) were included and weighted individually, no satisfactory correlation resulted. The most advanced model yielded very close correlation (RMSE=0.32 kcal mol^−1^) fully comparable with the entirely empirical correlation introduced in the original paper.3 Analysis of the theoretical results shows the importance of inter‐ and intramolecular stacking energies, and especially the latter term plays a key role in determining DNA‐duplex stabilization.
📜 SIMILAR VOLUMES
## Abstract Phenanthrene‐1,2‐dimethanol was incorporated into oligodeoxynucleotides __via__ formation of phosphodiester bonds (__cf. Scheme 1__). If placed at internal positions in a DNA duplex, a strong reduction of duplex stability is observed (__Table 1__). Terminal attachment of stretches of ph
MB Eindhoven, T h e Netherlands ## SYNOPSIS Phosphate-methylated ( P.M.) DNA possesses a very high affinity for complementary natural DNA, as a result of the absence of interstrand electrostatic repulsions. In this study, a model system phosphate-methylated d [ C,] with natural d ( G k ) ( n < 12
Many important applications of DNA sequence-dependent hybridization reactions have recently emerged. This has sparked a renewed interest in analytical calculations of sequence-dependent melting stability of duplex DNA. In particular, for many applications it is often desirable to accurately predict