Target intelligence / Profile preview

Tumor necrosis factor receptor-associated protein 1 (TRAP1) (TRAP1)

Target
TRAP1
Molecular classification
Molecular chaperone, Enzyme (ATPase activity), Member of the heat shock protein 90 (HSP90) family
01

Overview

TRAP1 is a mitochondrial molecular chaperone of the HSP90 family, distinct from cytosolic HSP90 variants. It facilitates ATP-dependent folding and protection of nascent and stress-damaged proteins within mitochondria, modulates cellular metabolism (balancing oxidative phosphorylation and glycolysis), and protects against apoptosis by regulating oxidative stress and mitochondrial permeability. TRAP1 is upregulated in multiple cancer types, where it supports metabolic adaptation, drug resistance, and tumor progression; it is downregulated in neurodegenerative diseases like Alzheimer's and Parkinson's disease, where loss of mitochondrial protection may contribute to pathogenesis. Drugs targeting TRAP1 are in development, aimed at selectively impairing tumor metabolism without broadly harming normal tissue, though therapeutic windows and safety remain active areas of research. If focusing on cytosolic HSP90, the canonical name would be Heat shock protein 90 alpha (HSP90AA1) or beta (HSP90AB1), but "HSP90/TRAP1" most often means the mitochondrial TRAP1 variant. If greater specificity is needed for structured queries, split entries for HSP90 (cytosolic) and TRAP1 (mitochondrial) can be provided.

Other names
TRAP1TNF receptor-associated protein 1HSP75Heat shock protein 90 kDa family member TRAP1Mitochondrial Hsp90
02

Mechanism of action

Inhibition of TRAP1's ATPase chaperone activity disrupts protein folding, quality control, and metabolic adaptation—causing cancer cell apoptosis and chemosensitization. Modulation of mitochondrial homeostasis and stress responses. Selective antagonism of TRAP1 can induce oxidative stress or apoptosis in diseased cells.

03

Biological functions

Protein folding and quality control (particularly in mitochondria)Protection against apoptosis and oxidative stressRegulation of mitochondrial metabolism and respirationMaintenance of mitochondrial integrityCell signaling modulationRedox homeostasis and regulation of reactive oxygen species (ROS)Cell survival (notably pro-survival in cancer)
04

Disease associations

Cancer (notably overexpressed in tumors, role in drug resistance)Neurodegenerative diseases (e.g., Alzheimer's disease, Parkinson's disease)Aging (impact on healthspan in animal models)Potential role in metabolic and mitochondrial disorders
05

Safety considerations

Potential for off-target mitochondrial toxicity (since TRAP1 is critical for mitochondrial homeostasis)Unknown impact on normal tissue metabolism due to broad role in mitochondrial functionRisk of exacerbating neurodegeneration if inhibited in CNS pathologiesResistance mechanisms possible due to redundancy in cellular chaperone systems
06

Interacting drugs

HSP90 inhibitors (some target TRAP1, e.g., Gamitrinib, a mitochondrial HSP90 inhibitor)

2 more in the full profile.

07

Biomarkers

TRAP1 expression levels (prognostic in cancer; lower in neurodegenerative disease tissue)Metabolic signatures associated with TRAP1 modulation (e.g., glycolytic shift, altered oxidative phosphorylation)Downstream client proteins, for example PINK1 phosphorylation status (for Parkinson’s)

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