• Title of article

    The Crystal Structure of the Olfactory Marker Protein at 2.3 Å Resolution

  • Author/Authors

    Paul C Smith، نويسنده , , Stuart Firestein، نويسنده , , John F Hunt، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2002
  • Pages
    15
  • From page
    807
  • To page
    821
  • Abstract
    Olfactory marker protein (OMP) is a highly expressed and phylogenetically conserved cytoplasmic protein of unknown function found almost exclusively in mature olfactory sensory neurons. Electrophysiological studies of olfactory epithelia in OMP knock-out mice show strongly retarded recovery following odorant stimulation leading to an impaired response to pulsed odor stimulation. Although these studies show that OMP is a modulator of the olfactory signal-transduction cascade, its biochemical role is not established. In order to facilitate further studies on the molecular function of OMP, its crystal structure has been determined at 2.3 Å resolution using multiwavelength anomalous diffraction experiments on selenium-labeled protein. OMP is observed to form a modified β-clamshell structure with eight antiparallel β-strands. While OMP has no significant sequence homology to proteins of known structure, it has a similar fold to a domain found in a variety of existing structures, including in a large family of viral capsid proteins. The surface of OMP is mostly convex and lacking obvious small molecule binding sites, suggesting that it is more likely to be involved in modulating protein–protein interaction than in interacting with small molecule ligands. Three highly conserved regions have been identified as leading candidates for protein–protein interaction sites in OMP. One of these sites represents a loop known to mediate ligand interactions in the structurally homologous EphB2 receptor ligand-binding domain. This site is partially buried in the crystal structure but fully exposed in the NMR solution structure of OMP due to a change in the orientation of an α-helix that projects outward from the structurally invariant β-clamshell core. Gating of this conformational change by molecular interactions in the signal-transduction cascade could be used to control access to OMPʹs equivalent of the EphB2 ligand-interaction loop, thereby allowing OMP to function as a molecular switch.
  • Keywords
    olfactory signal transduction , protein structure , Protein–protein interactions , X-ray crystallography , ?-clamshell fold
  • Journal title
    Journal of Molecular Biology
  • Serial Year
    2002
  • Journal title
    Journal of Molecular Biology
  • Record number

    1241772