• Title of article

    Comparison of structurally-related alkoxide, amine, and thiolate-ligated MII (M = Fe, Co) complexes: The influence of thiolates on the properties of biologically relevant metal complexes

  • Author/Authors

    Brines، نويسنده , , Lisa M. and Villar-Acevedo، نويسنده , , Gloria and Kitagawa، نويسنده , , Terutaka and Swartz، نويسنده , , Rodney D. and Lugo-Mas، نويسنده , , Priscilla and Kaminsky، نويسنده , , Werner and Benedict، نويسنده , , Jason B. and Kovacs، نويسنده , , Julie A.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    9
  • From page
    1070
  • To page
    1078
  • Abstract
    Mechanistic pathways of metalloenzymes are controlled by the metal ion’s electronic and magnetic properties, which are tuned by the coordinated ligands. The functional advantage gained by incorporating cysteinates into the active site of non-heme iron enzymes such as superoxide reductase (SOR) is not entirely understood. Herein, we compare the structural and redox properties of a series of structurally-related thiolate, alkoxide, and amine-ligated Fe(II) complexes in order to determine how the thiolate influences properties critical to function. Thiolates are shown to reduce metal ion Lewis acidity relative to alkoxides and amines, and have a strong trans influence thereby helping to maintain an open coordination site. Comparison of the redox potentials of the structurally analogous compounds described herein shows that alkoxide ligands favor the higher-valent Fe3+ oxidation state, amine ligands favor the reduced Fe2+ oxidation state, and thiolates fall somewhere in between. These properties provide a functional advantage for substrate reducing enzymes in that they provide a site at the metal ion for substrate to bind, and a moderate potential that facilitates both substrate reduction and regeneration of the catalytically active reduced state. Redox potentials for structurally-related Co(II) complexes are shown to be cathodically-shifted relative to their Fe(II) analogues, making them ineffective reducing agents for substrates such as superoxide.
  • Keywords
    Bioinorganic , X-ray crystal structures , Metalloenzyme function , Synthetic thiolate-ligated iron complexes , Non-heme iron , Redox properties
  • Journal title
    INORGANICA CHIMICA ACTA
  • Serial Year
    2008
  • Journal title
    INORGANICA CHIMICA ACTA
  • Record number

    1324977