Biallelic Variants in KMO Cause a Novel Form of Congenital NAD Deficiency
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Abstract Congenital NAD deficiency disorder (CNDD) is a gene × environment disorder caused by disruptions of the kynurenine pathway. To date, CNDD has been associated with biallelic variants in three kynurenine pathway genes: KYNU, HAAO, and NADSYN1 . We identified two sisters with congenital anomalies overlapping with CNDD who have biallelic variants in a gene encoding a different kynurenine pathway enzyme, KMO . The surviving child also has elevated levels of metabolites upstream of KMO with low NAD + levels in plasma, suggesting that KMO deficiency is a novel CNDD. To explore the pathogenicity of KMO deficiency, we generated a global Kmo knockout mouse model ( Kmo -/- ) and utilized dietary interventions to better model human gene × environment interactions. Although Kmo -/- mice are viable and fertile on typical breeder chow, they exhibit elevated serum kynurenine and are functionally vitamin B3-dependent. Under conditions of limited maternal vitamin B3 intake, a greater proportion of Kmo -/- embryos develop congenital anomalies and have significantly lower NAD + levels than Kmo +/- littermates. Exploratory untargeted metabolomics performed in Kmo -/- embryos suggested that NAD + deficiency may perturb the pyrimidine, purine, and pentose phosphate pathways. These findings establish KMO deficiency as a new cause of CNDD and highlight a critical gene × environment interaction influencing NAD metabolism and congenital anomalies.
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DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Biallelic Variants in <i>KMO</i> Cause a Novel Form of Congenital NAD Deficiency
- Date Crossref
- 27/08/2026
- Éditeur
- openRxiv
- Type
- posted-content
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