Target intelligence / Profile preview

D-amino acid oxidase (DAAO) (DAAO)

Target
DAAO
Molecular classification
Enzyme, Flavoenzyme, Oxidoreductase, Peroxisomal enzyme
01

Overview

D-amino acid oxidase (DAAO) is a peroxisomal flavoenzyme that catalyzes the oxidative deamination of neutral and polar D-amino acids, such as D-serine and D-alanine, into their corresponding alpha-keto acids, ammonia, and hydrogen peroxide (UniProt [3], [17]). In the central nervous system, DAAO is the primary enzyme responsible for the degradation of D-serine, a critical endogenous co-agonist at the glycine site of the N-methyl-D-aspartate (NMDA) receptor (PubMed [1], [13]). Increased expression and activity of DAAO have been observed in the brains of patients with schizophrenia, leading to reduced D-serine levels and subsequent NMDA receptor hypofunction, which is linked to cognitive and negative symptoms (PMC [2], [15]). Consequently, DAAO is a major therapeutic target for the development of inhibitors aimed at restoring NMDA receptor signaling by increasing synaptic D-serine concentrations (PubMed [9], [12]). Beyond its role in psychiatric disorders, DAAO is implicated in the pathogenesis of amyotrophic lateral sclerosis (ALS) through specific mutations and plays a detoxifying role in the liver and kidneys (NCBI [16], [11]). Clinical candidates like luvadaxistat (TAK-831) have been evaluated in trials for their potential to treat cognitive impairment associated with schizophrenia (PMC [5], [12]).

Other names
DAOOXDADAMOXD-amino-acid oxidase
02

Mechanism of action

DAAO inhibitors block the oxidative deamination of D-serine, thereby increasing its availability as a co-agonist for the NMDA receptor. This enhancement of NMDA receptor-mediated neurotransmission is intended to alleviate cognitive and negative symptoms in schizophrenia and other disorders associated with glutamatergic hypofunction (PubMed [1], [12]).

03

Biological functions

Oxidative deamination of D-amino acidsRegulation of D-serine levelsNMDA receptor modulationDetoxification of D-amino acidsHydrogen peroxide production
04

Disease associations

SchizophreniaAmyotrophic lateral sclerosis (ALS)Cognitive impairmentNeuropathic painBipolar disorder
05

Safety considerations

Potential nephrotoxicity (based on high-dose D-serine animal studies) (PMC [12])Liver transaminase elevations (observed with some inhibitors) (YouTube/NeurologyLive [19])Risk of excitotoxicity from excessive NMDA receptor activation (theoretical) (PMC [12])
06

Interacting drugs

Sodium benzoate

6 more in the full profile.

07

Biomarkers

D-serine levels in plasma or CSF (PubMed [1], [2])DAAO activity in blood (NCBI [16])Mismatch Negativity (MMN) (PMC [5], [12])

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