Target intelligence / Profile preview

Coenzyme Q7, hydroxylase (COQ7)

Target
COQ7
Molecular classification
Enzyme (hydroxylase), Oxidoreductase, Di-iron carboxylate enzyme
01

Overview

Coenzyme Q7, hydroxylase (COQ7) is a mitochondrial, di-iron-dependent oxidoreductase enzyme essential for the penultimate step in the biosynthesis of coenzyme Q (ubiquinone), a vital component of the electron transport chain and cellular oxidoreductive metabolism. COQ7 catalyzes the C6-hydroxylation of demethoxyubiquinone, a precursor to ubiquinone, via a substrate-mediated electron reduction pathway requiring NADH and its di-iron center. Deficiency of COQ7 activity results in accumulation of demethoxyubiquinone and clinical features of mitochondrial dysfunction, including primary coenzyme Q10 deficiency, cardiomyopathy, and neuromuscular disorders. Besides its mitochondrial function, COQ7 may translocate to the nucleus under stress and participate in retrograde signaling to regulate gene expression in response to mitochondrial redox status. COQ7 is highly conserved across eukaryotes and is required for lifespan determination, embryonic development, and regulation of reactive oxygen species.

Other names
CLK-1CAT53-demethoxyubiquinone 3-hydroxylase (NADH)Timing protein clk-1 homologUbiquinone biosynthesis monooxygenase COQ75-demethoxyubiquinone hydroxylaseCOQ7 coenzyme Q 7 homologDMQ hydroxylasecoenzyme Q biosynthesis protein 7 homologcoenzyme Q7 homologubiquinone biosynthesis protein COQ7 homolog
02

Mechanism of action

Inhibition of COQ7 results in decreased ubiquinone synthesis and accumulation of upstream metabolic intermediates (e.g., demethoxyubiquinone). Iron chelation impairs the di-iron enzyme activity of COQ7, blocking CoQ production.

03

Biological functions

Ubiquinone (coenzyme Q) biosynthesisHydroxylation of demethoxyubiquinone to 5-hydroxyubiquinoneElectron transport (mitochondrial respiratory chain)Regulation of reactive oxygen species metabolismRegulation of transcription by RNA polymerase II (nuclear signaling)
04

Disease associations

Primary coenzyme Q10 deficiency (mitochondrial disorder)Distal hereditary motor neuronopathy (autosomal recessive 9)CardiomyopathyNeurodegenerative and aging-related processes
05

Safety considerations

Disruption of COQ7 leads to mitochondrial dysfunction with downstream effects including energy deficiency, neurologic and muscular symptoms, cardiac dysfunction, and increased susceptibility to oxidative stressChallenges in rescuing mitochondrial disease due to tissue specificity and lack of targeted therapies.
06

Interacting drugs

No direct small-molecule drugs are currently approved or broadly described as targeting COQ7.

2 more in the full profile.

07

Biomarkers

Accumulation of demethoxyubiquinone (DMQ)Decreased cellular or plasma coenzyme Q10 levels

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