• Title of article

    Interactions of mast cell degranulating peptides with model membranes: A comparative biophysical study

  • Author/Authors

    dos Santos Cabrera، نويسنده , , Marcia Perez and Arcisio-Miranda، نويسنده , , Manoel and da Costa، نويسنده , , Laiana Cristina and de Souza، نويسنده , , Bibiana Monson and Broggio Costa، نويسنده , , Sabrina Thaيs and Palma، نويسنده , , Mario Sérgio and Ruggiero Neto، نويسنده , , Joمo and Procopio، نويسنده , , Joaquim، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    11
  • From page
    1
  • To page
    11
  • Abstract
    In the last decade, there has been renewed interest in biologically active peptides in fields like allergy, autoimmune diseases and antibiotic therapy. Mast cell degranulating peptides mimic G-protein receptors, showing different activity levels even among homologous peptides. Another important feature is their ability to interact directly with membrane phospholipids, in a fast and concentration-dependent way. The mechanism of action of peptide HR1 on model membranes was investigated comparatively to other mast cell degranulating peptides (Mastoparan, Eumenitin and Anoplin) to evidence the features that modulate their selectivity. Using vesicle leakage, single-channel recordings and zeta-potential measurements, we demonstrated that HR1 preferentially binds to anionic bilayers, accumulates, folds, and at very low concentrations, is able to insert and create membrane spanning ion-selective pores. We discuss the ion selectivity character of the pores based on the neutralization or screening of the peptides charges by the bilayer head group charges or dipoles.
  • Keywords
    Anoplin , Eumenitin , Peptide-membrane interactions , Mast cell degranulating peptides , Ionic selectivity , Pore activity , Zeta-potential , Ion channel-like activity , Mastoparan peptide HR1 , Lytic activity
  • Journal title
    Archives of Biochemistry and Biophysics
  • Serial Year
    2009
  • Journal title
    Archives of Biochemistry and Biophysics
  • Record number

    1630537