Heat shock protein HSP 90-beta
Also known as: HSP90AB1, HSP90B, HSPC2, HSPC3, HSPCB
Function
Molecular chaperone that promotes the maturation, structural maintenance and proper regulation of specific target proteins involved for instance in cell cycle control and signal transduction. Undergoes a functional cycle linked to its ATPase activity. This cycle probably induces conformational changes in the client proteins, thereby causing their activation. Interacts dynamically with various co-chaperones that modulate its substrate recognition, ATPase cycle and chaperone function. Engages with a range of client protein classes via its interaction with various co-chaperone proteins or complexes, that act as adapters, simultaneously able to interact with the specific client and the central chaperone itself. Recruitment of ATP and co-chaperone followed by client protein forms a functional chaperone. After the completion of the chaperoning process, properly folded client protein and co-chaperone leave HSP90 in an ADP-bound partially open conformation and finally, ADP is released from HSP90 which acquires an open conformation for the next cycle. Apart from its chaperone activity, it also plays a role in the regulation of the transcription machinery. HSP90 and its co-chaperones modulate transcription at least at three different levels. They first alter the steady-state levels of certain transcription factors in response to various physiological cues. Second, they modulate the activity of certain epigenetic modifiers, such as histone deacetylases or DNA methyl transferases, and thereby respond to the change in the environment. Third, they participate in the eviction of histones from the promoter region of certain genes and thereby turn on gene expression. Antagonizes STUB1-mediated inhibition of TGF-beta signaling via inhibition of STUB1-mediated SMAD3 ubiquitination and degradation. Promotes cell differentiation by chaperoning BIRC2 and thereby protecting from auto-ubiquitination and degradation by the proteasomal machinery. Main chaperone involved in the phosphorylation/activation of the STAT1 by chaperoning both JAK2 and PRKCE under heat shock and in turn, activates its own transcription. Involved in the translocation into ERGIC (endoplasmic reticulum-Golgi intermediate compartment) of leaderless cargos (lacking the secretion signal sequence) such as the interleukin 1/IL-1; the translocation process is mediated by the cargo receptor TMED10.
Classification
- Family (Pfam)
- PF13589 HATPase_c_3, PF00183 HSP90
- InterPro
- HATPase_C_sf, HATPase_dom, Heat_shock_protein_90_CS, HSP90_C, Hsp90_fam, Hsp90_N, Ribosomal_Su5_D2-typ_SF
- Functional cluster
- HSP70/HSP90 Molecular Chaperones
Experimental structures · PDB · 31
- 1QZ2 X-ray 3.00A
- 1UYM X-ray 2.45A
- 2L6J NMR
- 3FWV X-ray 2.20A
- 3NMQ X-ray 2.20A
- 3PRY X-ray 2.28A
- 3UQ3 X-ray 2.60A
- 5FWK EM 3.90A
- 5FWL EM 9.00A
- 5FWM EM 8.00A
- 5FWP EM 7.20A
- 5UC4 X-ray 2.05A
- … and 19 more
A predicted model is available from AlphaFold.
Gene Ontology · 68
- GO:0034751 aryl hydrocarbon receptor complex
- GO:0044295 axonal growth cone
- GO:0009986 cell surface
- GO:0005737 cytoplasm
- GO:0005829 cytosol
- GO:0044294 dendritic growth cone
- GO:0120293 dynein axonemal particle
- GO:0070062 extracellular exosome
- GO:0005576 extracellular region
- GO:1904813 ficolin-1-rich granule lumen
- GO:1990565 HSP90-CDC37 chaperone complex
- GO:0042470 melanosome
- GO:0016020 membrane
- GO:0005739 mitochondrion
- GO:0043025 neuronal cell body
- GO:0005654 nucleoplasm
- GO:0005634 nucleus
- GO:0048471 perinuclear region of cytoplasm
- GO:0005886 plasma membrane
- GO:0101031 protein folding chaperone complex
- GO:0032991 protein-containing complex
- GO:0034774 secretory granule lumen
- GO:0005524 ATP binding
- GO:0016887 ATP hydrolysis activity
- GO:0043008 ATP-dependent protein binding
- GO:0140662 ATP-dependent protein folding chaperone
- GO:0045296 cadherin binding
- GO:0097718 disordered domain specific binding
- GO:0070182 DNA polymerase binding
- GO:0003725 double-stranded RNA binding
- GO:0031072 heat shock protein binding
- GO:0042826 histone deacetylase binding
- GO:1990226 histone methyltransferase binding
- GO:0042802 identical protein binding
- GO:0019900 kinase binding
- GO:0023026 MHC class II protein complex binding
- GO:0030235 nitric-oxide synthase regulator activity
- GO:0042277 peptide binding
- GO:0046983 protein dimerization activity
- GO:0044183 protein folding chaperone
- GO:0042803 protein homodimerization activity
- GO:0019901 protein kinase binding
- GO:0019887 protein kinase regulator activity
- GO:0072542 protein phosphatase activator activity
- GO:0141069 receptor ligand inhibitor activity
- GO:0003723 RNA binding
- GO:0048156 tau protein binding
- GO:0030911 TPR domain binding
- GO:0031625 ubiquitin protein ligase binding
- GO:0051082 unfolded protein binding
- GO:0034605 cellular response to heat
- GO:0051131 chaperone-mediated protein complex assembly
- GO:1901799 negative regulation of proteasomal protein catabolic process
- GO:0032435 negative regulation of proteasomal ubiquitin-dependent protein catabolic process
- GO:0045597 positive regulation of cell differentiation
- GO:0045429 positive regulation of nitric oxide biosynthetic process
- GO:2000010 positive regulation of protein localization to cell surface
- GO:0030511 positive regulation of transforming growth factor beta receptor signaling pathway
- GO:0006457 protein folding
- GO:0050821 protein stabilization
- GO:0051726 regulation of cell cycle
- GO:0032880 regulation of protein localization
- GO:0031396 regulation of protein ubiquitination
- GO:0006986 response to unfolded protein
- GO:0097435 supramolecular fiber organization
- GO:1905323 telomerase holoenzyme complex assembly
- GO:0007004 telomere maintenance via telomerase
- GO:0019062 virion attachment to host cell
Drugs targeting this protein · 8
- TANESPIMYCIN inhibitor
- SNX 5422 inhibitor
- ONALESPIB inhibitor
- GANETESPIB inhibitor
- LUMINESPIB inhibitor
- RETASPIMYCIN HYDROCHLORIDE inhibitor
- ALVESPIMYCIN inhibitor
- BIIB021 inhibitor
Related proteins · sequence + function similarity
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock protein HSP 90-beta 1.00
- Heat shock cognate protein HSP 90-beta 0.99
- Heat shock cognate protein HSP 90-beta 0.99
- Heat shock protein HSP 90-beta 0.99
- Heat shock protein HSP 90-alpha 0.98
- Heat shock protein 83 0.98
Co-cited proteins · studied together in the literature
- Heat shock protein HSP 90-alpha 14 shared papers
- Potassium voltage-gated channel subfamily KQT member 4 1 shared papers
- Neisseria adhesin A 2 shared papers
- Stress-induced-phosphoprotein 1 1 shared papers
- Activator of 90 kDa heat shock protein ATPase homolog 1 1 shared papers
- NACHT domain- and WD repeat-containing protein 1 1 shared papers
- Peptidyl-prolyl cis-trans isomerase FKBP4 1 shared papers
- Nitric oxide synthase 3 1 shared papers
- Aryl hydrocarbon receptor 1 shared papers
- Small glutamine-rich tetratricopeptide repeat-containing protein alpha 1 shared papers
- M-phase inducer phosphatase 1 1 shared papers
- Protein unc-45 homolog A 1 shared papers
Literature · 62 cited papers
- A Translocation Pathway for Vesicle-Mediated Unconventional Protein Secretion. Cell · 2020
- Hsp90: Friends, clients and natural foes. Biochimie · 2016
- Review: The HSP90 molecular chaperone-an enigmatic ATPase. Biopolymers · 2016
- Client proteins and small molecule inhibitors display distinct binding preferences for constitutive and stress-induced HSP90 isoforms and their conformationally restricted mutants. PLoS ONE · 2015
- Hsp90, the concertmaster: tuning transcription. Front. Oncol. · 2015
- N-terminome analysis of the human mitochondrial proteome. Proteomics · 2015
- Middle domain of human Hsp90 isoforms differentially binds Aha1 in human cells and alters Hsp90 activity in yeast. Biochim. Biophys. Acta · 2015
- SMYD2-dependent HSP90 methylation promotes cancer cell proliferation by regulating the chaperone complex formation. Cancer Lett. · 2014
- The NLR-related protein NWD1 is associated with prostate cancer and modulates androgen receptor signaling. Oncotarget · 2014
- Hsp70 and Hsp90 oppositely regulate TGF-beta signaling through CHIP/Stub1. Biochem. Biophys. Res. Commun. · 2014
- An enzyme assisted RP-RPLC approach for in-depth analysis of human liver phosphoproteome. J. Proteomics · 2014
- LPS induces pp60c-src-mediated tyrosine phosphorylation of Hsp90 in lung vascular endothelial cells and mouse lung. Am. J. Physiol. · 2013
- … and 50 more in the literature graph