• Title of article

    Structure of Selenophosphate Synthetase Essential for Selenium Incorporation into Proteins and RNAs

  • Author/Authors

    Yuzuru Itoh، نويسنده , , Shun-ichi Sekine، نويسنده , , Eiko Matsumoto، نويسنده , , Ryogo Akasaka، نويسنده , , Chie Takemoto، نويسنده , , Mikako Shirouzu، نويسنده , , Shigeyuki Yokoyama، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    14
  • From page
    1456
  • To page
    1469
  • Abstract
    Selenophosphate synthetase (SPS) catalyzes the activation of selenide with adenosine 5′-triphosphate (ATP) to generate selenophosphate, the essential reactive selenium donor for the formation of selenocysteine (Sec) and 2-selenouridine residues in proteins and RNAs, respectively. Many SPS are themselves Sec-containing proteins, in which Sec replaces Cys in the catalytically essential position (Sec/Cys). We solved the crystal structures of Aquifex aeolicus SPS and its complex with adenosine 5′-(α,β-methylene) triphosphate (AMPCPP). The ATP-binding site is formed at the subunit interface of the homodimer. Four Asp residues coordinate four metal ions to bind the phosphate groups of AMPCPP. In the free SPS structure, the two loop regions in the ATP-binding site are not ordered, and no enzyme-associated metal is observed. This suggests that ATP binding, metal binding, and the formation of their binding sites are interdependent. To identify the amino-acid residues that contribute to SPS activity, we prepared six mutants of SPS and examined their selenide-dependent ATP consumption. Mutational analyses revealed that Sec/Cys13 and Lys16 are essential. In SPS·AMPCPP, the N-terminal loop, including the two residues, assumes different conformations (“open” and “closed”) between the two subunits. The AMPCPP γ-phosphate group is solvent-accessible, suggesting that a putative nucleophile could attack the ATP γ-phosphate group to generate selenophosphate and adenosine 5′-diphosphate (ADP). Selenide attached to Sec/Cys13 as –Se–Se−/–S–Se− could serve as the nucleophile in the “closed” conformation. A water molecule, fixed close to the β-phosphate group, could function as the nucleophile in subsequent ADP hydrolysis to orthophosphate and adenosine 5′-monophosphate.
  • Keywords
    SelD , selenoprotein , PurM superfamily , selenocysteine , X-ray crystallography
  • Journal title
    Journal of Molecular Biology
  • Serial Year
    2009
  • Journal title
    Journal of Molecular Biology
  • Record number

    1257932