• Title of article

    Renin inhibition by substituted piperidines: A novel paradigm for the inhibition of monomeric aspartic proteinases? Original Research Article

  • Author/Authors

    Christian Oefner، نويسنده , , A Binggeli، نويسنده , , V Breu، نويسنده , , D Bur، نويسنده , , J-P Clozel، نويسنده , , A DʹArcy، نويسنده , , A Dorn، نويسنده , , W Fischli، نويسنده , , F Grüninger، نويسنده , , R Güller، نويسنده , , G Hirth، نويسنده , , HP M?rki، نويسنده , , S Mathews، نويسنده , , M Müller، نويسنده , , RG Ridley، نويسنده , , H Stadier، نويسنده , , E Vieira، نويسنده , , M Wilhelm، نويسنده , , FK Winkler and SE Ealick، نويسنده , , W Wostl، نويسنده , , et al.، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 1999
  • Pages
    5
  • From page
    127
  • To page
    131
  • Abstract
    The aspartic proteinase renin catalyses the first and rate-limiting step in the conversion of angiotensinogen to the hormone angiotensin II, and therefore plays an important physiological role in the regulation of blood pressure. Numerous potent peptidomimetic inhibitors of this important drug target have been developed, but none of these compounds have progressed past clinical phase II trials. Limited oral bioavailability or excessive production costs have prevented these inhibitors from becoming new antihypertensive drugs. We were interested in developing new nonpeptidomimetic renin inhibitors. Results High-throughput screening of the Roche compound library identified a simple 3,4-disubstituted piperidine lead compound. We determined the crystal structures of recombinant human renin complexed with two representatives of this new class. Binding of these substituted piperidine derivatives is accompanied by major induced-fit adaptations around the enzymeʹs active site. Conclusions The efficient optimisation of the piperidine inhibitors was facilitated by structural analysis of the renin active site in two renin-inhibitor complexes (some of the piperidine derivatives have picomolar affinities for renin). These structural changes provide the basis for a novel paradigm for inhibition of monomeric aspartic proteinases.
  • Journal title
    Chemistry and Biology
  • Serial Year
    1999
  • Journal title
    Chemistry and Biology
  • Record number

    1158108