Molecular Dynamics Simulation To Investigate Differences in Minor Groove Hydration of HNA/RNA Hybrids As Compared to HNA/DNA Complexes

Hexitol nucleic acids (HNA) are oligonucleotides built up from natural nucleobases and a phosphorylated 1,5-anhydrohexitol backbone. Molecular associations between HNA and RNA are more stable than between HNA and DNA and between natural nucleic acids (dsDNA, dsRNA, DNA/RNA). 1H NMR analysis of a HNA...

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Veröffentlicht in:Journal of the American Chemical Society 1998-06, Vol.120 (22), p.5381-5394
Hauptverfasser: Winter, H. De, Lescrinier, E, Aerschot, A. Van, Herdewijn, P
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Sprache:eng
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Zusammenfassung:Hexitol nucleic acids (HNA) are oligonucleotides built up from natural nucleobases and a phosphorylated 1,5-anhydrohexitol backbone. Molecular associations between HNA and RNA are more stable than between HNA and DNA and between natural nucleic acids (dsDNA, dsRNA, DNA/RNA). 1H NMR analysis of a HNA dimer confirms the axial orientation of the base moiety with respect to the hexitol ring, and this was used as starting conformation for a molecular dynamics study of HNA/RNA and HNA/DNA duplexes. Both complexes show an A-type geometry and very similar hydrogen bonding patterns between base pairs. The relative stability of HNA/RNA versus HNA/DNA might be explained by a difference in minor groove solvatation.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja973721f