Target intelligence / Profile preview

Three-prime repair exonuclease 1 (TREX1) (TREX1)

Target
TREX1
Molecular classification
Enzyme, Exonuclease, Nuclease
01

Overview

Three-prime repair exonuclease 1 (TREX1) is the major 3'-to-5' DNA exonuclease in mammalian cells, primarily localized to the cytosolic face of the endoplasmic reticulum. It serves as an essential gatekeeper of immune homeostasis by degrading cytosolic DNA fragments originating from endogenous retroelements, micronuclei, or external pathogens, thereby preventing the aberrant activation of the cGAS-STING innate immune sensing pathway. Loss-of-function mutations in the TREX1 gene cause severe 'interferonopathies,' such as Aicardi-Goutières syndrome and systemic lupus erythematosus, characterized by chronic production of type I interferons and systemic inflammation. Conversely, cancer cells often upregulate TREX1 to clear immunogenic DNA generated by genomic instability or therapy, allowing them to evade immune detection. In drug development, TREX1 has emerged as a high-value oncology target where inhibition is used to 're-arm' the innate immune system within the tumor microenvironment, potentially synergizing with existing checkpoint inhibitors and radiotherapy. Several biotech companies are advancing small-molecule inhibitors to induce local STING activation and improve antitumor responses. Beyond oncology, TREX1 activators are being explored to clear circulating cell-free DNA in rheumatoid arthritis, while its role in HIV-1 uncoating makes it a candidate for antiviral strategies. Notable developmental compounds include tool inhibitors like VB-85680 and natural activators like pterostilbene.

Other names
TREX-1DNase IIIDeoxyribonuclease III3'-5' exonuclease TREX1AGS1DRN3CRVHERNS
02

Mechanism of action

TREX1 inhibitors block the degradation of cytosolic DNA, leading to its accumulation and subsequent activation of the cGAS-STING pathway, which induces type I interferons to enhance antitumor immunity. In inflammatory contexts, TREX1 activators enhance the clearance of cell-free DNA to suppress chronic innate immune activation.

03

Biological functions

Cytosolic DNA degradationRegulation of cGAS-STING pathwayInnate immune responseDNA repairProofreading functionRetroelement degradationApoptosis regulation
04

Disease associations

CancerAicardi-Goutières syndrome (AGS)Systemic lupus erythematosus (SLE)Familial chilblain lupus (FCL)Retinal vasculopathy with cerebral leukodystrophy (RVCL)HIV-1 infectionRheumatoid arthritis (RA)
05

Safety considerations

Autoimmune reactionsSystemic inflammation (interferonopathies)Inflammatory myocarditisPotential for increased DNA damage and genomic instabilityTherapeutic index challenges in systemic delivery
06

Interacting drugs

VB-85680

4 more in the full profile.

07

Biomarkers

Cytosolic DNA levelsType I interferon levels (e.g., IFN-beta)STING activation (phosphorylated STING)Interferon-stimulated gene (ISG) signatureTREX1 expression levels

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