• Title of article

    The utility of residual dipolar couplings in detecting motion in carbohydrates: application to sucrose Original Research Article

  • Author/Authors

    Richard M. Venable، نويسنده , , Frank Delaglio، نويسنده , , Scott E. Norris، نويسنده , , Dar?n I. Freedberg، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2005
  • Pages
    12
  • From page
    863
  • To page
    874
  • Abstract
    The solution structure and dynamics of sucrose are examined using a combination of NMR residual dipolar coupling and molecular mechanics force fields. It is found that the alignment tensors of the individual rings are different, and that fitting 35 measured residual dipolar couplings to structures with specific ϕ, ψ values indicates the presence of three major conformations: ϕ, ψ = (120°, 270°), (45°, 300°) and (90°, 180°). Furthermore, fitting two structures simultaneously to the 35 residual dipolar couplings results in a substantial improvement in the fits. The existence of multiple conformations having similar stabilities is a strong indication of motion, due to the interconversion among these states. Results from four molecular mechanics force fields are in general agreement with the experimental results. However, there are major disagreements between force fields. Because fits of residual dipolar couplings to structures are dependent on the force field used to calculate the structures, multiple force fields were used to interpret NMR data. It is demonstrated that the pucker of the fructofuranosyl ring affects the calculated potential energy surface, and the fit to the residual dipolar couplings data. Previously published 13C nuclear relaxation results suggesting that sucrose is rigid are not inconsistent with the present results when motional timescales are considered.
  • Keywords
    Carbohydrate structure , Sucrose , Residual dipolar coupling , Carbohydrate dynamics , Heteronuclear NMR
  • Journal title
    Carbohydrate Research
  • Serial Year
    2005
  • Journal title
    Carbohydrate Research
  • Record number

    964370