Target intelligence / Profile preview

8-Oxoguanine DNA glycosylase (OGG1)

Target
OGG1
Molecular classification
Enzyme, DNA glycosylase, Base excision repair enzyme, N-glycosylase/DNA lyase
01

Overview

8-Oxoguanine DNA glycosylase (OGG1) is a bifunctional DNA repair enzyme responsible for recognizing and excising 8-oxoguanine—a mutagenic oxidative lesion formed in DNA due to reactive oxygen species exposure—from both nuclear and mitochondrial DNA as the critical first step in the base excision repair pathway[6][7]. OGG1 cleaves the glycosidic bond to release the damaged base and then incises the DNA backbone via AP lyase activity, preventing G:C to T:A transversion mutations and maintaining genomic stability[4][3]. Beyond repair, OGG1 participates in transcriptional regulation and cellular signaling, including modulating the activity of Ras and Rac GTPases and the expression of immune and inflammatory genes[5][2]. Altered OGG1 expression or activity is implicated in various diseases, including cancer, inflammation, and neurodegenerative disorders, making it a candidate therapeutic target for drug discovery focused on modulating DNA repair or the cellular response to oxidative stress[1][6][9].

Other names
N-glycosylase/DNA lyaseDNA-(apurinic or apyrimidinic site) lyaseMMHMUTMOGH1AP lyaseHMMHHOGG18-hydroxyguanine DNA glycosylaseOGG1 type 1eOGG1 type 1dOGG1 type 1gOGG1 type 1hOGG1 type 1f
02

Mechanism of action

Inhibition of OGG1 leads to accumulation of 8-oxoguanine lesions, increasing DNA damage and mutation rate. Activation of OGG1 enhances base excision repair, potentially protective against oxidative stress. Modulation of OGG1 enzymatic or signaling functions (e.g., affecting its role in gene transcription or Ras pathway activation) is also a mechanism of action.

03

Biological functions

DNA repair (specifically base excision repair of oxidized bases, notably 8-oxoguanine)Genome stability maintenanceMitochondrial DNA repairTranscriptional regulationRegulation of cellular signaling pathways (including Ras and Rac signaling)
04

Disease associations

CancerInflammationNeurodegenerative diseaseAging-related diseasesOther diseases arising from genomic instability or oxidative DNA damage
05

Safety considerations

Inhibition may increase risk of mutagenesis and cancer due to unrepaired oxidative DNA damageOveractivation could potentially increase strand break intermediates or aberrant repair, but data are limited
06

Interacting drugs

OGG1 modulators
07

Biomarkers

8-oxoguanine (8-oxoG) levels in DNA (as indicator of OGG1 substrate accumulation)Expression and activity levels of OGG1 in tumors or diseased tissues

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