| Literature DB >> 23271462 |
Gábor Paragi1, Zoltán Kupihár, Célia Fonseca Guerra, F Matthias Bickelhaupt, Lajos Kovács.
Abstract
The density functional theory calculations of 7-methylguanine clusters revealed that stable ring assemblies can be formed with or without anions in the center position and hexameric clusters are the most stable and most planar ones. The coordination of anions (Cl⁻, Br⁻, NO₃⁻) stabilizes and thus favors the formation of planar aggregates. We believe that the predicted planar structures stabilized by anions are good models for self-assembly structures formed at solid-liquid or solid-gas interfaces. Comparing the bonding and average H-bond energy to reference ribbon calculations we pointed out the presence of the previously introduced cooperativity effect in circular supramolecular structures of 7-methylguanine.Entities:
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Year: 2012 PMID: 23271462 PMCID: PMC6269867 DOI: 10.3390/molecules18010225
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1(a) The 7-methyl (m7G) and (b) the 9-methyl (m9G) substituted forms of guanine with optimal H-bonding directions in ring formation.
Figure 2Calculated geometries of 4-, 5- and 6-membered ring conformations of m7G (top and side view) with selected distances (in Å).
Bonding energies and average H-bond energies (in kcal/mol) of the 4-, 5- and 6-membered m7G rings (with and without Cs symmetry) and the planar ribbon structures with 4, 5, 6 and 7 units. The number of H-bonds in the concerned structure is also shown.
| Tetramer | Pentamer | Hexamer | Heptamer | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Energy | H-bonds | Energy | H-bonds | Energy | H-bonds | Energy | H-bonds | |||||
| Bonding | Average H-bond | Bonding | Average H-bond | Bonding | Average H-bond | Bonding | Average H-bond | |||||
| Ring | −71.9 | −9.0 | 8 | −96.7 | −9.7 | 10 | −120.4 | −10.0 | 12 | - | ||
| Ring | −53.3 | −6.7 | −76.6 | −7.7 | −114.0 | −9.5 | ||||||
| Ribbon | −78.1 | −8.7 | 9 | −102.1 | −8.5 | 12 | −130.7 | −8.7 | 15 | −156.3 | −8.7 | 18 |
Figure 3Optimized planar ring and ribbon structures of m7G with selected distances (in Å). The numbers in parenthesis show the corresponding distances in 7H-guanine crystal [17]. The hollow arrows represent the D-H…A hydrogen bonding pattern.
Figure 4Optimum geometry of m7G hexamer with selected (Cl−, Br−, NO3−) anions without Cs symmetry.
Bonding energies and ion bonding energies (in kcal/mol) of hexameric m7G ring in the presence of selected anions (Cl−, Br− and NO3−). Optimizations were carried out with and without Cs symmetry.
| Hexameric ring with anions | Cl− | Br− | NO3− | |||
|---|---|---|---|---|---|---|
| Bonding energy | Ion bonding energy | Bonding energy | Ion bonding energy | Bonding energy | Ion bonding energy | |
| without Cs sym. | −170.8 | −50.3 | −168.3 | −47.6 | −177.0 | −56.3 |
| with Cs sym. | −170.3 | −50.1 | −167.7 | −47.6 | −174.3 | −54.1 |