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Structural basis for inhibition of the Hsp90 molecular chaperone by the antitumor antibiotics radicicol and geldanamycin
journal contribution
posted on 2023-06-08, 20:12 authored by S Mark Roe, Chrisostomos ProdromouChrisostomos Prodromou, Ronan O'Brien, John E Ladbury, Peter W Piper, Laurence PearlLaurence PearlThe cellular activity of several regulatory and signal transduction proteins, which depend on the Hsp90 molecular chaperone for folding, is markedly decreased by geldanamycin and by radicicol (monorden). We now show that these unrelated compounds both bind to the N-terminal ATP/ADP-binding domain of Hsp90, with radicicol displaying nanomolar affinity, and both inhibit the inherent ATPase activity of Hsp90 which is essential for its function in vivo. Crystal structure determinations of Hsp90 N-terminal domain complexes with geldanamycin and radicicol identify key aspects of their nucleotide mimicry and suggest a rational basis for the design of novel antichaperone drugs.
History
Publication status
- Published
Journal
Journal of Medicinal ChemistryISSN
0022-2623Publisher
American Chemical SocietyExternal DOI
Issue
2Volume
42Page range
260-266Department affiliated with
- Biochemistry Publications
Full text available
- No
Peer reviewed?
- Yes