2FXS
Yeast HSP82 in complex with the novel HSP90 Inhibitor Radamide
Summary for 2FXS
Entry DOI | 10.2210/pdb2fxs/pdb |
Related | 1A4H 1BGQ 1QY8 1U0Z 1ZWH 2EXL 2FYP |
Descriptor | ATP-dependent molecular chaperone HSP82, METHYL 3-CHLORO-2-{3-[(2,5-DIHYDROXY-4-METHOXYPHENYL)AMINO]-3-OXOPROPYL}-4,6-DIHYDROXYBENZOATE, GLYCEROL, ... (4 entities in total) |
Functional Keywords | hsp82, hsp90, grp94, htpg, chaperone, ligand, radicicol, geldanamycin, radester |
Biological source | Saccharomyces cerevisiae (baker's yeast) |
Cellular location | Cytoplasm: P02829 |
Total number of polymer chains | 1 |
Total formula weight | 27917.03 |
Authors | Immormino, R.M.,Gewirth, D.T. (deposition date: 2006-02-06, release date: 2007-02-06, Last modification date: 2023-08-30) |
Primary citation | Immormino, R.M.,Metzger, L.E.,Reardon, P.N.,Dollins, D.E.,Blagg, B.S.,Gewirth, D.T. Different poses for ligand and chaperone in inhibitor-bound Hsp90 and GRP94: implications for paralog-specific drug design. J.Mol.Biol., 388:1033-1042, 2009 Cited by PubMed Abstract: Hsp90 chaperones contain an N-terminal ATP binding site that has been effectively targeted by competitive inhibitors. Despite the myriad of inhibitors, none to date have been designed to bind specifically to just one of the four mammalian Hsp90 paralogs, which are cytoplasmic Hsp90alpha and beta, endoplasmic reticulum GRP94, and mitochondrial Trap-1. Given that each of the Hsp90 paralogs is responsible for chaperoning a distinct set of client proteins, specific targeting of one Hsp90 paralog may result in higher efficacy and therapeutic control. Specific inhibitors may also help elucidate the biochemical roles of each Hsp90 paralog. Here, we present side-by-side comparisons of the structures of yeast Hsp90 and mammalian GRP94, bound to the pan-Hsp90 inhibitors geldanamycin (Gdm) and radamide. These structures reveal paralog-specific differences in the Hsp90 and GRP94 conformations in response to Gdm binding. We also report significant variation in the pose and disparate binding affinities for the Gdm-radicicol chimera radamide when bound to the two paralogs, which may be exploited in the design of paralog-specific inhibitors. PubMed: 19361515DOI: 10.1016/j.jmb.2009.03.071 PDB entries with the same primary citation |
Experimental method | X-RAY DIFFRACTION (2 Å) |
Structure validation
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