Target intelligence / Profile preview

Flavin adenine dinucleotide-dependent enzyme (FAD-dependent enzyme)

Target
FAD-dependent enzyme
Molecular classification
Enzyme, Oxidoreductase, Monooxygenase (for specific subclasses), Dehydrogenase (for specific subclasses)
01

Overview

Flavin adenine dinucleotide-dependent enzymes are a broad superfamily of enzymes that require the redox-active cofactor FAD (derived from riboflavin, vitamin B2) for catalytic activity[4][6]. These enzymes participate in oxidation-reduction (redox) reactions essential for energy metabolism, including β-oxidation of fatty acids, amino acid catabolism, the citric acid cycle, and the electron transport chain[2][4][3][6]. FAD-dependent enzymes are structurally and functionally diverse and include oxidoreductases, monooxygenases, dehydrogenases, and certain DNA repair enzymes[6][3][5]. They are critical for both catabolic and anabolic pathways and can regulate or mediate electron transfer, oxygenation, and hydroxylation reactions[2][3][5]. Dysfunction or inhibition of specific FAD-dependent enzymes is implicated in metabolic disorders, cardiovascular disease, neurodegeneration, and cancer[2][4][3]. While this entry captures a class of enzymes rather than a single molecular entity, numerous FAD-dependent enzymes are themselves therapeutic targets[6][5]. As a result, "Flavin adenine dinucleotide-dependent enzyme" is not one single molecular target, but rather a collective term for a functionally defined family of enzymes dependent on FAD[4][6].

Other names
FlavoenzymeFlavin-dependent enzymeFAD-dependent oxidoreductaseFAD-dependent monooxygenaseFlavin adenine dinucleotide-dependent monooxygenase
02

Mechanism of action

Competitive inhibition (of substrate at enzyme active site, e.g., allopurinol for xanthine oxidase) Redox cycling or suicide inhibition (antineoplastic agents) Cofactor replacement or depletion (nutritional therapy with riboflavin)

03

Biological functions

Redox reactions (oxidation-reduction)Electron transportFatty acid β-oxidationAmino acid catabolismDNA repairNucleotide biosynthesisCellular respirationDetoxification of xenobioticsBiosynthesis of secondary metabolitesRegulation of biological clocks (photoreception in some species)Bioluminescence (in some bacteria)
04

Disease associations

Cancer (flavoenzyme dysfunction or overactivity)Cardiovascular disease (mitochondrial dysfunction)Metabolic disorders (e.g., glutaric acidemia due to glutaryl-CoA dehydrogenase defect)Neurodegenerative disease (oxidative stress)Infection (bacterial enzymes as antibacterial targets)Other (rare genetic disorders of flavin metabolism)
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Safety considerations

Off-target inhibition can disrupt essential metabolic pathwaysMitochondrial dysfunctionRedox imbalance/oxidative stress
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Interacting drugs

Allopurinol (xanthine oxidase inhibitor)

3 more in the full profile.

07

Biomarkers

FAD-dependent enzyme activity (e.g., plasma levels for diagnosing metabolic disorders)Accumulation of specific metabolites (e.g., glutaric acid, xanthine in respective deficiencies)Riboflavin/FAD status (in some inborn errors of metabolism)

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