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A metabolic signature for NADSYN1-dependent congenital NAD deficiency disorder

Justin O. Szot, Hartmut Cuny, Ella MMA Martin, Delicia Z Sheng, Kavitha R. Iyer, Stephanie Portelli, Vivien Nguyen, Jessica M. Gereis, Dimuthu Alankarage, David Chitayat, Karen Chong, Ingrid M. Wentzensen, Catherine Vincent‐Delorme, Alban Lermine, Emma Burkitt‐Wright

Journal of Clinical Investigation · 2024 · ▲ 27 citations

Abstract

Nicotinamide adenine dinucleotide (NAD) is essential for embryonic development. To date, biallelic loss-of-function variants in 3 genes encoding nonredundant enzymes of the NAD de novo synthesis pathway - KYNU, HAAO, and NADSYN1 - have been identified in humans with congenital malformations defined as congenital NAD deficiency disorder (CNDD). Here, we identified 13 further individuals with biallelic NADSYN1 variants predicted to be damaging, and phenotypes ranging from multiple severe malformations to the complete absence of malformation. Enzymatic assessment of variant deleteriousness in vitro revealed protein domain-specific perturbation, complemented by protein structure modeling in silico. We reproduced NADSYN1-dependent CNDD in mice and assessed various maternal NAD precursor supplementation strategies to prevent adverse pregnancy outcomes. While for Nadsyn1+/- mothers, any B3 vitamer was suitable to raise NAD, preventing embryo loss and malformation, Nadsyn1-/- mothers required supplementation with amidated NAD precursors (nicotinamide or nicotinamide mononucleotide) bypassing their metabolic block. The circulatory NAD metabolome in mice and humans before and after NAD precursor supplementation revealed a consistent metabolic signature with utility for patient identification. Our data collectively improve clinical diagnostics of NADSYN1-dependent CNDD, provide guidance for the therapeutic prevention of CNDD, and suggest an ongoing need to maintain NAD levels via amidated NAD precursor supplementation after birth.

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Provenance

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OpenAlex
DOI
10.1172/jci174824
Canonical
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2026-06-16 MST

Cite this

APA
Szot, J.O., Cuny, H., Martin, E.M., Sheng, D.Z., Iyer, K.R., Portelli, S., Nguyen, V., Gereis, J.M., Alankarage, D., Chitayat, D., Chong, K., Wentzensen, I.M., Vincent‐Delorme, C., Lermine, A., Burkitt‐Wright, E., Ji, W., Jeffries, L., Pais, L., Tan, T.Y., &amp; Pitt, J. (2024). A metabolic signature for NADSYN1-dependent congenital NAD deficiency disorder. <em>Journal of Clinical Investigation</em>. https://doi.org/10.1172/jci174824
Vancouver
Szot JO, Cuny H, Martin EM, Sheng DZ, Iyer KR, Portelli S, et al. A metabolic signature for NADSYN1-dependent congenital NAD deficiency disorder. Journal of Clinical Investigation. 2024. doi:10.1172/jci174824.
BibTeX
@article{justin2024Ametab, title = {A metabolic signature for NADSYN1-dependent congenital NAD deficiency disorder}, author = {Justin O. Szot and Hartmut Cuny and Ella MMA Martin and Delicia Z Sheng and Kavitha R. Iyer and Stephanie Portelli and Vivien Nguyen and Jessica M. Gereis and Dimuthu Alankarage and David Chitayat and Karen Chong and Ingrid M. Wentzensen and Catherine Vincent‐Delorme and Alban Lermine and Emma Burkitt‐Wright and Weizhen Ji and Lauren Jeffries and Lynn Pais and Tiong Yang Tan and James Pitt and C. Wise and Helen Wright and Israel D. Andrews and Brianna Pruniski and Theresa A. Grebe}, journal = {Journal of Clinical Investigation}, year = {2024}, doi = {10.1172/jci174824}, }

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