• Title of article

    Organization, structure and activity of proteins in monolayers

  • Author/Authors

    Boucher، نويسنده , , Julie and Trudel، نويسنده , , Eric and Méthot، نويسنده , , Mario and Desmeules، نويسنده , , Philippe and Salesse، نويسنده , , Christian، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    18
  • From page
    73
  • To page
    90
  • Abstract
    Many different processes take place at the cell membrane interface. Indeed, for instance, ligands bind membrane proteins which in turn activate peripheral membrane proteins, some of which are enzymes whose action is also located at the membrane interface. Native cell membranes are difficult to use to gain information on the activity of individual proteins at the membrane interface because of the large number of different proteins involved in membranous processes. Model membrane systems, such as monolayers at the air–water interface, have thus been extensively used during the last 50 years to reconstitute proteins and to gain information on their organization, structure and activity in membranes. In the present paper, we review the recent work we have performed with membrane and peripheral proteins as well as enzymes in monolayers at the air–water interface. We show that the structure and orientation of gramicidin has been determined by combining different methods. Furthermore, we demonstrate that the secondary structure of rhodopsin and bacteriorhodopsin is indistinguishable from that in native membranes when appropriate conditions are used. We also show that the kinetics and extent of monolayer binding of myristoylated recoverin is much faster than that of the nonmyristoylated form and that this binding is highly favored by the presence polyunsaturated phospholipids. Moreover, we show that the use of fragments of RPE65 allow determine which region of this protein is most likely involved in membrane binding. Monomolecular films were also used to further understand the hydrolysis of organized phospholipids by phospholipases A2 and C.
  • Keywords
    Monolayer , Phospholipase , Air–water interface , Recoverin , RPE65 , rhodopsin , gramicidin , bacteriorhodopsin , membrane protein , Protein , Peripheral protein
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Serial Year
    2007
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Record number

    1968273