• Title of article

    Ligand electronic properties modulate tau filament binding site density Original Research Article

  • Author/Authors

    Katryna Cisek، نويسنده , , Jordan R. Jensen، نويسنده , , Nicolette S. Honson، نويسنده , , Kelsey N. Schafer، نويسنده , , Grace L. Cooper، نويسنده , , Jeff Kuret، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    9
  • From page
    25
  • To page
    33
  • Abstract
    Small molecules that bind tau-bearing neurofibrillary lesions are being sought for premortem diagnosis, staging, and treatment of Alzheimerʹs disease and other tauopathic neurodegenerative diseases. The utility of these agents will depend on both their binding affinity and binding site density (Bmax). Previously we identified polarizability as a descriptor of protein aggregate binding affinity. To examine its contribution to binding site density, we investigated the ability of two closely related benzothiazole derivatives ((E)-2-[[4-(dimethylamino)phenyl]azo]-6-methoxybenzothiazole) and ((E)-2-[2-[4-(dimethylamino)phenyl]ethenyl]-6-methoxybenzothiazole) that differed in polarizability to displace probes of high (Thioflavin S) and low (radiolabeled (E,E)-1-iodo-2,5-bis(3-hydroxycarbonyl-4-methoxy)styrylbenzene; IMSB) density sites. Consistent with their site densities, Thioflavin S completely displaced radiolabeled IMSB, but IMSB was incapable of displacing Thioflavin S. Although both benzothiazoles displaced the low Bmax IMSB probe, only the highly polarizable analog displaced near saturating concentrations of the Thioflavin S probe. Quantum calculations showed that high polarizability reflected extensive pi-electron delocalization fostered by the presence of electron donating and accepting groups. These data suggest that electron delocalization promotes ligand binding at a subset of sites on tau aggregates that are present at high density, and that optimizing this aspect of ligand structure can yield tau-directed agents with superior diagnostic and therapeutic performance.
  • Keywords
    Polarizability , Computational chemistry , Dispersion force , Alzheimerיs disease , Ligand binding , Tau protein
  • Journal title
    Biophysical Chemistry
  • Serial Year
    2012
  • Journal title
    Biophysical Chemistry
  • Record number

    1120592