• Title of article

    Rational Design of Alkylene-Linked Bis-Pyridiniumaldoximes as Improved Acetylcholinesterase Reactivators Original Research Article

  • Author/Authors

    Yuan-Ping Pang، نويسنده , , Thomas M. Kollmeyer، نويسنده , , Feng Hong، نويسنده , , Jong-Cheol Lee، نويسنده , , Pamela I. Hammond، نويسنده , , Sharie P. Haugabouk، نويسنده , , Stephen Brimijoin، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2003
  • Pages
    12
  • From page
    491
  • To page
    502
  • Abstract
    To improve the potency of 2-pralidoxime (2-PAM) for treating organophosphate poisoning, we dimerized 2-PAM and its analogs according to Wilsonʹs pioneering work and the 3D structure of human acetylcholinesterase (hAChE) inactivated by isoflurophate. 1,7-Heptylene-bis-N,Nʹ-syn-2-pyridiniumaldoxime, the most potent of the alkylene-linked dimeric reactivators, was readily synthesized using bistriflate and is 100 times more potent than 2-PAM in reactivating hAChE poisoned by isoflurophate. Experimental and computational studies confirm that 2-PAM in its biologically active form adopts the syn-I configuration. Further, they suggest that the improved performance of dimeric oximes is conferred by two-site binding with one oxime pointing toward the diisopropyl ester at the catalytic site of hAChE and the other anchored at the peripheral site. This type of binding may induce a conformational change in the acyl pocket loop which modulates the catalytic site via a domino effect.
  • Journal title
    Chemistry and Biology
  • Serial Year
    2003
  • Journal title
    Chemistry and Biology
  • Record number

    1158655