Title of article
The HSP90 binding mode of a radicicol-like E-oxime determined by docking, binding free energy estimations, and NMR 15N chemical shifts Original Research Article
Author/Authors
Martin Spichty، نويسنده , , Antoine Taly، نويسنده , , Franz Hagn، نويسنده , , Kay-Eberhard Gottschalk and Horst Kessler، نويسنده , , Sofia Barluenga، نويسنده , , Nicolas Winssinger، نويسنده , , Martin Karplus، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
13
From page
111
To page
123
Abstract
We determine the binding mode of a macrocyclic radicicol-like oxime to yeast HSP90 by combining computer simulations and experimental measurements. We sample the macrocyclic scaffold of the unbound ligand by parallel tempering simulations and dock the most populated conformations to yeast HSP90. Docking poses are then evaluated by the use of binding free energy estimations with the linear interaction energy method. Comparison of QM/MM-calculated NMR chemical shifts with experimental shift data for a selective subset of backbone 15N provides an additional evaluation criteria. As a final test we check the binding modes against available structure–activity-relationships. We find that the most likely binding mode of the oxime to yeast HSP90 is very similar to the known structure of the radicicol–HSP90 complex.
Keywords
Heat shock protein , macrolide , Enhanced sampling , Flexible ligand docking , Binding mode evaluation , In silico drug design
Journal title
Biophysical Chemistry
Serial Year
2009
Journal title
Biophysical Chemistry
Record number
1120215
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