• Title of article

    Characterization of a Double Dockerin from the Cellulosome of the Anaerobic Fungus Piromyces equi

  • Author/Authors

    Tibor Nagy، نويسنده , , Richard B. Tunnicliffe، نويسنده , , Lee D. Higgins، نويسنده , , Chris Walters، نويسنده , , Harry J. Gilbert and Gideon J. Davies، نويسنده , , Ryan J. Williams and Mike P. Williamson، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    11
  • From page
    612
  • To page
    622
  • Abstract
    The assembly into supramolecular complexes of proteins having complementary activities is central to cellular function. One such complex of considerable biological and industrial significance is the plant cell wall-degrading apparatus of anaerobic microorganisms, termed the cellulosome. A central feature of bacterial cellulosomes is a large non-catalytic protein, the scaffoldin, which contains multiple cohesin domains. An array of digestive enzymes is incorporated into the cellulosome through the interaction of the dockerin domains, present in the catalytic subunits, with the cohesin domains that are present in the scaffoldin. By contrast, in anaerobic fungi, such as Piromyces equi, the dockerins of cellulosomal enzymes are often present in tandem copies; however, the identity of the cognate cohesin domains in these organisms is unclear, hindering further biotechnological development of the fungal cellulosome. Here, we characterise the solution structure and function of a double-dockerin construct from the P. equi endoglucanase Cel45A. We show that the two domains are connected by a flexible linker that is short enough to keep the binding sites of the two domains on adjacent surfaces, and allows the double-dockerin construct to bind more tightly to cellulosomes than a single domain and with greater coverage. The double dockerin binds to the GH3 β-glucosidase component of the fungal cellulosome, which is thereby identified as a potential scaffoldin.
  • Keywords
    cellulosome , scaffoldin , Endoglucanase , Piromyces equi , NMR structure
  • Journal title
    Journal of Molecular Biology
  • Serial Year
    2007
  • Journal title
    Journal of Molecular Biology
  • Record number

    1249821