HSP90
- [1]. Young JC, et al. Hsp90: a specialized but essential protein-folding tool. J Cell Biol. 2001 Jul 23;154(2):267-73. [Content Brief]
- [2]. Karagöz GE, et al. Hsp90 interaction with clients. Trends Biochem Sci. 2015 Feb;40(2):117-25. [Content Brief]
- [3]. Ausili A. Despite their structural similarities, et al. Despite their structural similarities, the cytosolic isoforms of human Hsp90 show different behaviour in thermal unfolding due to their conformation: An FTIR study. Arch Biochem Biophys. 2023 May 15;740:109599. [Content Brief]
- [4]. Assimon VA, et al. Specific Binding of Tetratricopeptide Repeat Proteins to Heat Shock Protein 70 (Hsp70) and Heat Shock Protein 90 (Hsp90) Is Regulated by Affinity and Phosphorylation. Biochemistry. 2015 Dec 8;54(48):7120-31. [Content Brief]
- [5]. Albakova Z. HSP90 multi-functionality in cancer. Front Immunol. 2024 Aug 1;15:1436973. doi: 10.3389/fimmu.2024.1436973. PMID: 39148727; PMCID: PMC11324539. et al. HSP90 multi-functionality in cancer. Front Immunol. 2024 Aug 1;15:1436973. [Content Brief]
- [6]. Rabezanahary H, et al. Live virus neutralizing antibodies against pre and post Omicron strains in food and retail workers in Québec, Canada. Heliyon. 2024 May 21;10(10):e31026. [Content Brief]
- [7]. Chang C, et al. The Distinct Assignments for Hsp90α and Hsp90β: More Than Skin Deep. Cells. 2023 Jan 11;12(2):277. [Content Brief]
- [8]. Sims JD, et al. Extracellular heat shock protein (Hsp)70 and Hsp90α assist in matrix metalloproteinase-2 activation and breast cancer cell migration and invasion. PLoS One. 2011 Apr 14;6(4):e18848. [Content Brief]
- [9]. Donnelly BF, et al. Hsp70 and Hsp90 multichaperone complexes sequentially regulate thiazide-sensitive cotransporter endoplasmic reticulum-associated degradation and biogenesis. J Biol Chem. 2013 May 3;288(18):13124-35. [Content Brief]
- [10]. Chen B, et al. Comparative genomics and evolution of the HSP90 family of genes across all kingdoms of organisms. BMC Genomics. 2006 Jun 17;7:156. [Content Brief]
- [11]. Chaudhury S, et al. The Hsp90β Isoform: An Attractive Target for Drug Development. Med Res Rev. 2025 Sep;45(5):1452-1465. [Content Brief]
- [12]. El-Kasaby A, et al. A cytosolic relay of heat shock proteins HSP70-1A and HSP90β monitors the folding trajectory of the serotonin transporter. J Biol Chem. 2014 Oct 17;289(42):28987-9000. [Content Brief]
- [13]. Morishima Y, et al. The hsp90 cochaperone p23 is the limiting component of the multiprotein hsp90/hsp70-based chaperone system in vivo where it acts to stabilize the client protein: hsp90 complex. J Biol Chem. 2003 Dec 5;278(49):48754-63. [Content Brief]
- [14]. Vogt M, et al. Co-targeting HSP90 alpha and CDK7 overcomes resistance against HSP90 inhibitors in BCR-ABL1+ leukemia cells. Cell Death Dis. 2023 Dec 6;14(12):799. [Content Brief]
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HSP90 Related Products (156)
Related Products (156)
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Antibodies (2)
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Geldanamycin-FITC
0 ImagesCat. No.: HY-133705CAS No.: 2969156-01-0 -
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AT-533
0 ImagesAT-533 is a potent Hsp90 and HSV inhibitor. AT-533 suppresses tumor growth and angiogenesis by blocking the HIF-1α/VEGF/VEGFR-2 signaling pathway. AT-533 also inhibits the activation of the downstream pathways, including Akt/mTOR/p70S6K, Erk1/2 and FAK. AT-533 inhibits the tube formation, cell migration, and invasion of human umbilical vein endothelial cells (HUVECs). -
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- VER-50589
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NCT-58
0 ImagesNCT-58 is a potent inhibitor of C-terminal HSP90. NCT-58 does not induce the heat shock response (HSR) due to its targeting of the C-terminal region and elicits anti-tumor activity via the simultaneous downregulation of HER family members as well as inhibition of Akt phosphorylation. NCT-58 kills Trastuzumab-resistant breast cancer stem-like cells. NCT-58 induces apoptosis in HER2-positive breast cancer cells. -
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Icapamespib
0 ImagesSynonyms: PU-HZ151Icapamespib (PU-HZ151; PU-AD) is a selective, orally active inhibitor of Epichaperomes assembled by HSP90 with slow dissociation kinetics. Icapamespib can cross the blood-brain barrier (BBB) ??and induce epichaperome disassembly by non-covalently binding to HSP90, restoring the normal protein-protein interaction network. Icapamespib can specifically disrupt disease-related abnormal protein interaction networks, reduce neurotoxic protein aggregation and tumor cell survival signals. Icapamespib can be used in the research of neurodegenerative diseases such as Alzheimer's disease, as well as cancers such as glioblastoma and metastatic breast cancer. -
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- Regaloside C
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DN401
0 ImagesSynonyms: Panvotinib-401; Pan-401DN401 is a potent TRAP1 inhibitor with an IC50 of 79 nM. DN401 shows a weak inhibition of Hsp90 (IC50 of 698 nM). DN401 inactivates mitochondrial TRAP1 and has potent anticancer activities. -
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Icapamespib hydrochloride
0 ImagesSynonyms: PU-HZ151 hydrochlorideIcapamespib (PU-HZ151; PU-AD) hydrochloride is a selective, orally active inhibitor of Epichaperomes assembled by HSP90 with slow dissociation kinetics. Icapamespib hydrochloride can cross the blood-brain barrier (BBB) ??and induce epichaperome disassembly by non-covalently binding to HSP90, restoring the normal protein-protein interaction network. Icapamespib hydrochloride can specifically disrupt disease-related abnormal protein interaction networks, reduce neurotoxic protein aggregation and tumor cell survival signals. Icapamespib hydrochloride can be used in the research of neurodegenerative diseases such as Alzheimer's disease, as well as cancers such as glioblastoma and metastatic breast cancer. -
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Ursolic acid acetate
0 ImagesSynonyms: Acetylursolic acid; 3-Acetylursolic acidUrsolic acid acetate (Acetylursolic acid) is a triterpenoid compound and an inhibitor of Plasmodium falciparum heat shock protein 90 (PfHsp90) with a KD of 8.16 μM. Ursolic acid acetate is cytotoxic to KB cells, with an IC50 value of 8.4 μM. Ursolic acid acetate can be used in tumor and antimalarial research. -
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2-Methoxyhydroquinone
0 Images2-Methoxyhydroquinone is a phenolic compound that reduces TNF-α-induced production of chemokine (C-C motif) ligand 2 (CCL2) with an IC50 value of 64.3 µM. 2-Methoxyhydroquinone is also a precursor in the synthesis of the Hsp90 inhibitor Geldanamycin (HY-15230). -
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- 3-Phenyltoxoflavin
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Tamoxifen-d5
0 ImagesSynonyms: ICI 47699-d5; (Z)-Tamoxifen-d5; trans-Tamoxifen-d5Tamoxifen-d5 is a deuterium labeled Tamoxifen. Tamoxifen (ICI 47699) is an orally active, selective estrogen receptor modulator (SERM). Tamoxifen is a potent Hsp90 activator and enhances the Hsp90 molecular chaperone ATPase activity. -
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Wighteone
0 ImagesSynonyms: 6-Isopentenylgenistein; Erythrinin BWighteone (6-Isopentenylgenistein; Erythrinin B) is a prenylated isoflavone that acts as a HSP90/EGFRL858R/T790M inhibitor and antifungal agent. Wighteone reduces the expression level of HSP90, blocks EGF-induced phosphorylation of EGFR, and thereby inhibits the downstream ERK and AKT signaling pathways. Wighteone induces cell cycle redistribution, inhibits proliferation and triggers apoptosis in cancer cells. Wighteone can be isolated from Erythrina suberosa, and can also be induced to synthesize in Lotus japonicus under specific conditions. Wighteone can be used to study HER2-positive breast cancer, leukemia, non-small cell lung cancer with EGFRL858R/T790M mutation, and fungal infections. -
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- YK5
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Conglobatin
0 ImagesCat. No.: HY-119906CAS No.: 72263-05-9Synonyms: FW-04-806Conglobatin (FW-04-806), a macrolide dilactone, is isolated from the culture of Streptomyces conglobatus. Conglobatin is an orally active Hsp90 inhibitor. Conglobatin can bind to the N-terminal domain of Hsp90 and disrupt Hsp90-Cdc37 complex formation. Conglobatin induces apoptosis in human breast cancer cells and esophageal squamous cell carcinoma cells, and exhibits antitumor activity in vivo. -
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Gedunin
0 ImagesGedunin is a limonoid with anti-cancer, anti-viral, anti-inflammatory and insecticidal activities. Gedunin acts as a potent Hsp90 inhibitor and induces the degradation of Hsp90-dependent client proteins. Geduni may obstructs the entry of SARS-CoV-2 virus into human host cells and can be used for COVID-19 research. -
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Gamendazole
0 ImagesGamendazole, an indazole carboxylic acid (ICA), is an orally active, selective HSP90AB1 (HSP90BETA) and EEF1A1 (eEF1A) inhibitor. Gamendazole binds to the C-terminal nucleotide binding pocket of HSP90 and cause downregulation of clients AKT1 and ERBB2, but stabilizes the HSP90 heterocomplex. Gamendazole specifically inhibits the actin bundling function of EEF1A1, but does not bind to the nucleotide docking pocket nor inhibits the ribosome charging or protein translation functions of EEF1A1. Gamendazole, an antispermatogenic compound with antifertility effects, has the potential for reversible non-hormonal male contraceptive agent research. -
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HEMTAC WEE1 degrader-1
0 ImagesHEMTAC WEE1 degrader-1 is a HSP90-mediated targeting chimera (HEMTAC) degrader of WEE1 (HSP90 enzyme inhibitory activity is IC50: 16.76 nM). HEMTAC WEE1 degrader-1 promotes the ubiquitination and degradation of WEE1. HEMTAC WEE1 degrader-1 blocks the G2/M cell cycle. HEMTAC WEE1 degrader-1 has anticancer activity in acute myeloid leukemia (AML) patient-derived xenograft (PDX) models. HEMTAC WEE1 degrader-1 can be used in AML research. (Pink: HSP90 binder; Blue: WEE1 ligand; Black: linker). -
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CH5138303
0 ImagesCH5138303 is a potent and orally active Hsp90 inhibitor. CH5138303 shows high binding affinity for N-terminal Hsp90α, with Kd of 0.52 nM. CH5138303 shows potent anti-proliferative activity against human cancer cell lines (HCT116 and NCI-N87), with IC50 values of 0.098 and 0.066 μM, respectively. CH5138303 shows high oral bioavailability in mice (F=44.0%). CH5138303 shows potent antitumor efficacy in a human NCI-N87 gastric cancer xenograft model. -
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HS-27
0 ImagesHS-27, a fluorescently-tethered Hsp90 inhibitor, assays surface Hsp90 expression on intact tissue specimens. HS-27 is made up of the core elements of SNX-5422, an Hsp90 inhibitor, tethered via a PEG linker to a fluorescein derivative (fluorescein isothiocyanate or FITC), that binds to ectopically expressed Hsp90. HS-27 has potential use in a see-and-treat paradigm in breast cancer. -
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0 ImagesCat. No.:Synonyms:-
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Application:
Human,
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Isotype:
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Reactivity:
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