4.6 Article

Disruptive NADSYN1 Variants Implicated in Congenital Vertebral Malformations

期刊

GENES
卷 12, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/genes12101615

关键词

congenital vertebral malformation; exome sequencing; NADSYN1 gene; congenital NAD Deficiency Disorder

资金

  1. Beijing Natural Science Foundation [JQ20032, 7191007, L192015]
  2. National Natural Science Foundation of China [81802121, 81822030, 82072391, 81930068, 81772299, 81672123, 81972037]
  3. Capitals Funds for Health Improvement and Research [2020-4-40114]
  4. Tsinghua University-Peking Union Medical College Hospital Initiative Scientific Research Program
  5. Nonprofit Central Research Institute Fund of Chinese Academy of Medical Sciences [2019PT320025]

向作者/读者索取更多资源

Genetic perturbations in NADSYN1 may predispose individuals to VCRL syndrome, and the study found that variants in NADSYN1 could impact protein levels and enzymatic activity, contributing to the complex genetic etiology of congenital vertebral malformations.
Genetic perturbations in nicotinamide adenine dinucleotide de novo (NAD) synthesis pathway predispose individuals to congenital birth defects. The NADSYN1 encodes the final enzyme in the de novo NAD synthesis pathway and, therefore, plays an important role in NAD metabolism and organ embryogenesis. Biallelic mutations in the NADSYN1 gene have been reported to be causative of congenital organ defects known as VCRL syndrome (Vertebral-Cardiac-Renal-Limb syndrome). Here, we analyzed the genetic variants in NADSYN1 in an exome-sequenced cohort consisting of patients with congenital vertebral malformations (CVMs). A total number of eight variants in NADSYN1, including two truncating variants and six missense variants, were identified in nine unrelated patients. All enrolled patients presented multiple organ defects, with the involvement of either the heart, kidney, limbs, or liver, as well as intraspinal deformities. An in vitro assay using COS-7 cells demonstrated either significantly reduced protein levels or disrupted enzymatic activity of the identified variants. Our findings demonstrated that functional variants in NADSYN1 were involved in the complex genetic etiology of CVMs and provided further evidence for the causative NADSYN1 variants in congenital NAD Deficiency Disorder.

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