• Title of article

    Structural properties and photophysical behavior of conformationally constrained hexapeptides functionalized with a new fluorescent analog of tryptophan and a nitroxide radical quencher

  • Author/Authors

    Venanzi، Mariano نويسنده , , Toniolo، Claudio نويسنده , , Formaggio، Fernando نويسنده , , Moroder، Luis نويسنده , , Valeri، Alessandro نويسنده , , Palleschi، Antonio نويسنده , , Stella، Lorenzo نويسنده , , Pispisa، Basilio نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    -127
  • From page
    128
  • To page
    0
  • Abstract
    The influence of the conformational properties on the photophysics of two de novo designed hexapeptides was studied by spectroscopic measurements (ir, NMR, steady-state, and time resolved fluorescence) and molecular mechanics calculations. The peptide sequences comprise two nonproteinogenic residues: a (beta)-(1-azulenyl)-Lalanine (Aal) residue, obtained by formally functionalizing the Ala side chain with the azulene chromophore, and a C (alpha)-tetrasubstituted (alpha)-amino acid (TOAC), incorporating a nitroxide group in a cycloalkyl moiety. Aal represents a new fluorescent, quasi-isosteric Trp analog and TOAC a stable radical species, frequently used as a paramagnetic probe in biochemical studies. The peptide chains differ in the sequence position of the two probes and are heavily based on Aib ((alpha)-aminoisobutyric acid) residues to generate conformationally restricted helical structures, as confirmed by both spectroscopic and computational results. The conformationally controlled, excited state interactions, determining the photophysical relaxation of the Aal*/TOAC pair, are also discussed.
  • Keywords
    photophysics , de novo designed hexapeptides , molecular mechanics , peptide sequences , proteinogenic residues , Spectroscopy
  • Journal title
    BIOPOLYMERS (ORIGINAL RESEARCH ON BIOMOLECULES)
  • Serial Year
    2004
  • Journal title
    BIOPOLYMERS (ORIGINAL RESEARCH ON BIOMOLECULES)
  • Record number

    120751