• Title of article

    Cyclic and dimeric gluten peptide analogues inhibiting DQ2-mediated antigen presentation in celiac disease Original Research Article

  • Author/Authors

    Jiang Xia، نويسنده , , Elin Bergseng، نويسنده , , Burkhard Fleckenstein، نويسنده , , Matthew Siegel، نويسنده , , Chu-Young Kim، نويسنده , , Chaitan Khosla، نويسنده , , Ludvig M. Sollid، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    9
  • From page
    6565
  • To page
    6573
  • Abstract
    Celiac disease is an immune mediated enteropathy elicited by gluten ingestion. The disorder has a strong association with HLA-DQ2. This HLA molecule is involved in the disease pathogenesis by presenting gluten peptides to T cells. Blocking the peptide-binding site of DQ2 may be a way to treat celiac disease. In this study, two types of peptide analogues, modeled after natural gluten antigens, were studied as DQ2 blockers. (a) Cyclic peptides. Cyclic peptides containing the DQ2-αI gliadin epitope LQPFPQPELPY were synthesized with flanking cysteine residues introduced and subsequently crosslinked via a disulfide bond. Alternatively, cyclic peptides were prepared with stable polyethylene glycol bridges across internal lysine residues of modified antigenic peptides such as KQPFPEKELPY and LQLQPFPQPEKPYPQPEKPY. The effect of cyclization as well as the length of the spacer in the cyclic peptides on DQ2 binding and T cell recognition was analyzed. Inhibition of peptide-DQ2 recognition by the T cell receptor was observed in T cell proliferation assays. (b) Dimeric peptides. Previously we developed a new type of peptide blocker with much enhanced affinity for DQ2 by dimerizing LQLQPFPQPEKPYPQPELPY through the lysine side chains. Herein, the effect of linker length on both DQ2 binding and T cell inhibition was investigated. One dimeric peptide analogue with an intermediate linker length was found to be especially effective at inhibiting DQ2 mediated antigen presentation. The implications of these findings for the treatment of celiac disease are discussed.
  • Keywords
    cyclic peptide , Dimeric peptide , Gluten , antigen presentation , HLA-DQ2 , Inhibition , Gliadin , Celiac disease
  • Journal title
    Bioorganic and Medicinal Chemistry
  • Serial Year
    2007
  • Journal title
    Bioorganic and Medicinal Chemistry
  • Record number

    1306039