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Theory of low-frequency vibrations in DNA macromolecules
1Institute for Theoretical Physics, Academy of Sciences of the Ukrainian SSR, Kiev.
Journal of Biomolecular Structure & Dynamics
|April 1, 1991
Abstract:
To describe low-frequency dynamics of DNA macromolecules a model is developed taking into account the hydrogen bond stretching in base pairs, the backbone flexibility and intranucleoside mobility. For double-stranded DNA the normal vibrations are found and the structure of low-frequency spectrum is determined. The agreement between theory and Raman spectroscopy data for B-DNA is demonstrated. Conformational dependences of vibration spectrum during the B----A and helix----coil DNA transitions are studied. The contribution coming from low-frequency mobility to the nucleic-protein recognition processes is discussed.