Target intelligence / Profile preview

DNA repair enzyme

Molecular classification
Enzyme, Other
01

Overview

DNA repair enzymes are a broad family of enzymes responsible for the recognition and correction of a variety of DNA lesions to maintain genome integrity[2][4][3]. Major subclasses include glycosylases, polymerases, endonucleases, photolyases, and dioxygenases, each typically specialized for a particular repair pathway (e.g., base excision repair, nucleotide excision repair, mismatch repair, direct reversal, or recombination repair)[1][2][3][5]. Dysfunction in DNA repair enzymes is associated with increased mutation rates and susceptibility to diseases such as cancer and neurodegenerative disorders[3]. Therapies targeting these enzymes, for instance PARP inhibitors, exploit tumor-specific DNA repair deficiencies to induce synthetic lethality, making DNA repair enzymes a significant focus in oncology drug development[4].

Other names
DNA repair proteinDNA repair enzyme familyDNA repair machinery
02

Mechanism of action

Inhibition of specific DNA repair pathways (e.g., PARP inhibition blocks single-strand break repair, leading to synthetic lethality in tumor cells with homologous recombination defects); Modulation or activation of repair enzymes to restore DNA integrity

03

Biological functions

DNA repairGenome stabilityCell cycle regulationResponse to DNA damageMaintenance of genomic integrity
04

Disease associations

CancerNeurodegenerative diseaseOther
05

Safety considerations

Off-target effects leading to genomic instabilityIncreased risk of secondary malignanciesPotential toxicity to non-cancerous replicating tissues
06

Interacting drugs

PARP inhibitors (e.g., olaparib, niraparib, rucaparib)

2 more in the full profile.

07

Biomarkers

Expression of specific DNA repair enzymes (e.g., PARP1, BRCA1/2 mutational status)Mutation signatures linked to deficient DNA repair (e.g., microsatellite instability, homologous recombination deficiency scores)

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