SCUBA

HSP90AA1 — Heat shock protein 90 alpha family class A member 1

HSP90AA1 belongs to a gene co-expression module in 16 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.

HSP90AA1's module in each cell type

Cell typeModuleShares the module with
CD19⁺ B cellsHeat Shock Response
Stress
BAG3, CHORDC1, DDIT4, DEDD2, DNAJA4, DNAJB1, DNAJB4, DNAJB6 +13 moreView in SCUBA
CD4⁺ T cellsHeat Shock Response
Stress
ANKRD37, CHORDC1, DEDD2, DNAJA1, DNAJA4, DNAJB1, DNAJB4, HSP90AB1 +12 moreView in SCUBA
CD8⁺ T cellsHeat Shock Response
Stress
AHSA1, BAG3, CACYBP, CCT3, DNAJA1, HSP90AB1, HSPA8, HSPD1 +4 moreView in SCUBA
EndothelialShear Stress Response
Stress
DNAJB1, DUSP1, EGR1, FOS, FOSB, HES1, HSPA1A, HSPA1B +11 moreView in SCUBA
EnterocytesNucleolar RNA-binding
RNA processing & translation
HMGB1, HMGN2, HNRNPA1, HNRNPA2B1, HNRNPA3, HSP90AB1, NCL, NPM1 +2 moreView in SCUBA
Gamma-delta T cellsHeat Shock Response
Stress
AHSA1, BAG3, CACYBP, CCT4, CHORDC1, DNAJA1, DNAJB1, DNAJB4 +13 more
Glial cellsImmediate Early Gene Response
Activation
DNAJB1, EGR1, FOS, FOSB, HES1, HSPA1A, HSPA1B, IER2 +3 moreView in SCUBA
Goblet cellsHeat Shock Response
Stress
DNAJA1, EIF1AX, EIF5, HSP90AB1, HSPA1A, HSPA1B, HSPA8, HSPB1 +5 moreView in SCUBA
Innate lymphoid cellsHeat Shock Response
Stress
AHSA1, ANKRD37, DEDD2, DNAJB1, DNAJB4, HSP90AB1, HSPA1A, HSPA1B +9 moreView in SCUBA
Lymphatic endothelialHeat Shock Response
Stress
BAG3, DNAJB1, DNAJB4, HSPA1A, HSPA1B, HSPA6, HSPB1, HSPE1 +3 moreView in SCUBA
MacrophagesEarly response genes
Inflammatory
ATF3, BAG3, BTG2, CGAS, DNAJA1, DNAJA4, DNAJB1, DNAJB4 +39 moreView in SCUBA
MonocytesHeat Shock Response
Stress
CHORDC1, DNAJA1, DNAJB1, HSP90AB1, HSPA1A, HSPA1B, HSPA8, HSPD1 +4 moreView in SCUBA
Mucosal-associated invariant T cellHeat Shock Response
Stress
ANKRD37, DNAJB1, HSP90AB1, HSPA8, JUND, RGS2, UBB, UBC
Natural Killer cellsHeat Shock Response
Stress
AHSA1, ANKRD37, CACYBP, CHORDC1, HSP90AB1, HSPA8, HSPD1, HSPE1 +3 moreView in SCUBA
NeutrophilsHeat Shock Response
Stress
ATP6V0C, CYB5D1, DNAJA1, DUSP2, GNG10, HMOX1, HSP90AB1, HSPA1A +4 more
Smooth muscle cellsHeat Shock Response
Stress
C12orf65, CEMIP2, CHORDC1, DNAJA1, DNAJB1, FOSB, H2AFX, HSPA1A +8 moreView in SCUBA

About the gene

SynonymsFLJ31884, Hsp89, Hsp90, HSP90N, HSPC1, HSPCA
Chromosome14: 102080742-102139699
Predicted locationIntracellular
Essential geneNo
Protein classCancer-related genes, Enzymes, Plasma proteins, Predicted intracellular proteins
Molecular functionChaperone, Hydrolase
Biological processHost-virus interaction, Stress response

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 that is linked to its ATPase activity which is essential for its chaperone 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. Plays a critical role in mitochondrial import, delivers preproteins to the mitochondrial import receptor TOMM70. 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. In the first place, they 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. Binds bacterial lipopolysaccharide (LPS) and mediates LPS-induced inflammatory response, including TNF secretion by monocytes. Antagonizes STUB1-mediated inhibition of TGF-beta signaling via inhibition of STUB1-mediated SMAD3 ubiquitination and degradation. Mediates the association of TOMM70 with IRF3 or TBK1 in mitochondrial outer membrane which promotes host antiviral response. (Microbial infection) Seems to interfere with N.meningitidis NadA-mediated invasion of human cells. Decreasing HSP90 levels increases adhesion and entry of E.coli expressing NadA into human Chang cells; increasing its levels leads to decreased adhesion and invasion

Human Protein Atlas · Open Targets · UniProt

Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.