• Title of article

    Enzymatic Activity of the Staphylococcus aureus SplB Serine Protease is Induced by Substrates Containing the Sequence Trp-Glu-Leu-Gln

  • Author/Authors

    Grzegorz Dubin، نويسنده , , Justyna Stec-Niemczyk، نويسنده , , Magdalena Kisielewska، نويسنده , , Katarzyna Pustelny، نويسنده , , Grzegorz M. Popowicz، نويسنده , , Michal Bista، نويسنده , , Tomasz Kantyka، نويسنده , , Kevin T. Boulware، نويسنده , , Henning R. Stennicke، نويسنده , , Anna Czarna، نويسنده , , Mullika Phopaisarn، نويسنده , , Patrick S. Daugherty، نويسنده , , Ida B. Th?gersen، نويسنده , , Jan J. ، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    14
  • From page
    343
  • To page
    356
  • Abstract
    Proteases are of significant importance for the virulence of Staphylococcus aureus. Nevertheless, their subset, the serine protease-like proteins, remains poorly characterized. Here presented is an investigation of SplB protease catalytic activity revealing that the enzyme possesses exquisite specificity and only cleaves efficiently after the sequence Trp-Glu-Leu-Gln. To understand the molecular basis for such selectivity, we solved the three-dimensional structure of SplB to 1.8 Å. Modeling of substrate binding to the protease demonstrated that selectivity relies in part on a canonical specificity pockets-based mechanism. Significantly, the conformation of residues that ordinarily form the oxyanion hole, an essential structural element of the catalytic machinery of serine proteases, is not canonical in the SplB structure. We postulate that within SplB, the oxyanion hole is only formed upon docking of a substrate containing the consensus sequence motif. It is suggested that this unusual activation mechanism is used in parallel with classical determinants to further limit enzyme specificity. Finally, to guide future development, we attempt to point at likely physiological substrates and thus the role of SplB in staphylococcal physiology.
  • Keywords
    protease , Substrate Specificity , Staphylococcus aureus , structure
  • Journal title
    Journal of Molecular Biology
  • Serial Year
    2008
  • Journal title
    Journal of Molecular Biology
  • Record number

    1256738