Target intelligence / Profile preview

Anaerobic bacterial and protozoal deoxyribonucleic acid (DNA) (DNA)

Target
DNA
Molecular classification
Nucleic acid
01

Overview

Anaerobic bacterial and protozoal deoxyribonucleic acid (DNA) is the fundamental genetic material for microorganisms that exist in anaerobic or microaerophilic environments. It is the primary target for nitroimidazole antibiotics, which are prodrugs that require metabolic activation within the pathogen (StatPearls, 2023). In these organisms, low-redox-potential electron transport proteins, such as ferredoxin or flavodoxin, reduce the nitro group of the drug to form short-lived, highly reactive nitro-radical intermediates (PubMed, PMC1074380). These radicals interact directly with the DNA molecule, causing covalent binding, strand breakage, and loss of the helical structure. This damage effectively inhibits DNA synthesis and leads to rapid cell death (PubChem, CID 4173). This mechanism provides high selectivity for anaerobic pathogens because aerobic cells lack the necessary low-redox-potential electron transport systems to activate the drug. Consequently, this target is critical in the treatment of infections caused by anaerobic bacteria like Bacteroides and Clostridium, as well as protozoa like Trichomonas and Giardia (NIH, 2022).

Other names
Microbial DNABacterial DNAProtozoal DNAAnaerobic DNA
02

Mechanism of action

Nitroimidazole drugs undergo reductive activation by microbial electron transport proteins like ferredoxin in anaerobic conditions, forming reactive radical intermediates that cause DNA strand breakage and destabilization of the DNA helix (StatPearls, 2023).

03

Biological functions

Genetic information storageReplicationTranscription
04

Disease associations

InfectionBacterial infectionProtozoal infection
05

Safety considerations

Antimicrobial resistanceNeurotoxicityDisulfiram-like reaction with alcoholPotential mutagenicity
06

Interacting drugs

Metronidazole

4 more in the full profile.

07

Biomarkers

Microbial DNA loadDNA fragmentationAnaerobic culture positivity

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