• Title of article

    The conformation of end-groups is one determinant of carotenoid topology suitable for high fidelity molecular recognition: A study of β- and ε-end-groups

  • Author/Authors

    Landrum، نويسنده , , John T. and Chatfield، نويسنده , , David C. and Mebel، نويسنده , , Alex M. and Alvarez-Calderon، نويسنده , , Francesca and Fernandez، نويسنده , , Melissa V. and Vila، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    6
  • From page
    169
  • To page
    174
  • Abstract
    Conformation affects a carotenoid’s ability to bind selectively to proteins. We calculated adiabatic energy profiles for rotating the ring end-groups around the C6C7 bond and for flexing of the ring with respect to the polyene chain. The choice of computational methods is important. A low, 4.2 kcal/mol barrier to rotation exists for a β-ring. An 8.3 kcal/mol barrier exists for rotation of an ε-ring. Rotation of the ε-ring is sensitive to substitution at C3. In the absence of external forces neither β- nor ε-rings are rotationally constrained. The nearly parallel alignment of the β-ring to the C6C7 bond axis contrasts to the more perpendicular orientation of the ε-ring. Flexion of a β-ring to the minimized ε-ring conformation requires ∼23 kcal/mol; extension of the ε-ring to the minimized β-ring conformation requires ∼8 kcal/mol. Selectivity associated with β- versus ε-rings is dominated by the inability of the β-ring to flex to minimize protein/ring steric interactions and maximize van der Waal’s attractions with the binding site.
  • Keywords
    Conformation , carotenoids , Selective binding , Rotational barrier , ?-Ionone ring , ?-Ionone ring , Lutein , zeaxanthin
  • Journal title
    Archives of Biochemistry and Biophysics
  • Serial Year
    2010
  • Journal title
    Archives of Biochemistry and Biophysics
  • Record number

    1630881