• Title of article

    ATP-Triggered Conformational Changes Delineate Substrate-Binding and -Folding Mechanics of the GroEL Chaperonin

  • Author/Authors

    Daniel K. Clare، نويسنده , , Daven Vasishtan، نويسنده , , Scott Stagg، نويسنده , , Joel Quispe، نويسنده , , George W. Farr، نويسنده , , Maya Topf، نويسنده , , Arthur L. Horwich and Wayne A. Fenton، نويسنده , , Helen R. Saibil، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2012
  • Pages
    11
  • From page
    113
  • To page
    123
  • Abstract
    The chaperonin GroEL assists the folding of nascent or stress-denatured polypeptides by actions of binding and encapsulation. ATP binding initiates a series of conformational changes triggering the association of the cochaperonin GroES, followed by further large movements that eject the substrate polypeptide from hydrophobic binding sites into a GroES-capped, hydrophilic folding chamber. We used cryo-electron microscopy, statistical analysis, and flexible fitting to resolve a set of distinct GroEL-ATP conformations that can be ordered into a trajectory of domain rotation and elevation. The initial conformations are likely to be the ones that capture polypeptide substrate. Then the binding domains extend radially to separate from each other but maintain their binding surfaces facing the cavity, potentially exerting mechanical force upon kinetically trapped, misfolded substrates. The extended conformation also provides a potential docking site for GroES, to trigger the final, 100° domain rotation constituting the “power stroke” that ejects substrate into the folding chamber.
  • Journal title
    CELL
  • Serial Year
    2012
  • Journal title
    CELL
  • Record number

    1021121