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Effects of Inhibitors on Hsp90′s Conformational Dynamics, Cochaperone and Client Interactions
Author(s) -
Schmid Sonja,
Götz Markus,
Hugel Thorsten
Publication year - 2018
Publication title -
chemphyschem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.016
H-Index - 140
eISSN - 1439-7641
pISSN - 1439-4235
DOI - 10.1002/cphc.201800342
Subject(s) - hsp90 , geldanamycin , chemistry , allosteric regulation , novobiocin , molecular dynamics , heat shock protein , biophysics , chaperone (clinical) , mechanism of action , biochemistry , enzyme , biology , in vitro , computational chemistry , medicine , gene , antibiotics , pathology
The molecular chaperone and heat‐shock protein Hsp90 has become a central target in anti‐cancer therapy. Nevertheless, the effect of Hsp90 inhibition is still not understood at the molecular level, preventing a truly rational drug design. Here we report on the effect of the most prominent drug candidates, namely, radicicol, geldanamycin, derivatives of purine, and novobiocin, on Hsp90′s characteristic conformational dynamics and the binding of three interaction partners. Unexpectedly, the global opening and closing transitions are hardly affected by Hsp90 inhibitors. Moreover, we find no significant changes in the binding of the cochaperones Aha1 and p23 nor of the model substrate Δ131Δ. This holds true for competitive and allosteric inhibitors. Therefore, direct inhibition mechanisms affecting only one molecular interaction are unlikely. We suggest that the inhibitory action observed in vivo is caused by a combination of subtle effects, which can be used in the search for novel Hsp90 inhibition mechanisms.
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