Journal of Clinical & Translational Endocrinology · Published 2026-02-01 · DOI 10.1016/j.jcte.2026.100433
Background: Familial glucocorticoid deficiency (FGD; MIM: 614736) is a genetic disease of glucocorticoid insufficiency, with autosomal recessive mode of inheritance. The FGD is genetically heterogeneous disorder that involves multiple genes related to the pathway that regulates the signaling from pituitary to the adrenal cortex, or the specific redox reactions in mitochondria. The phenotypic spectrum for FGD is also diverse with considerable variability in clinical features. Among the genetic determinants of this disease, pathogenic mutations in NNT gene results in Familial glucocorticoid deficiency type 4. Here we report three consanguineous families with single nucleotide variants in NNT that manifest as familial glucocorticoid deficiency in multiple family members. Method: Prospective cohort of three families from different tribes were identified with clinical diagnosis of familial glucocorticoid deficiency (FGD). Whole exome sequencing (WES) done for affected family members followed by validation of discovered variant by Sanger sequencing and subsequent functional studies including quantitative PCR analysis and protein Modelling. Results: The screening of entire coding region of the genomes of probands in each family revealed three distinct mutations, including one novel missense variant (c.1067 C > T; p.Thr356Ile), classified as variant of uncertain significance (VUS; Class-3) and two recurrent variants (c.1025 T > C; p.Val342Ala and c.98dup; p.Leu33Phefs*13), classified as pathogenic [Class-I]. Computational protein modelling of these mutations (c.98dup and c.1025 T > C) suggests atypical changes in the structure of the mutant proteins that likely disrupt the physiological role of NNT in mitochondria of adrenal cortex. Conclusion: The exome sequencing genetically characterized the autosomal recessive sub-type 4 of hereditary glucocorticoid deficiency in families showing the features of cortisol deficiency, including the development of hypoglycemia and adrenal crisis. This strongly supports the pathogenicity of these variants. In addition, this suggests importance of mitochondrial function in post developmental maintenance of cortisol significance in terms of cellular metabolism, carried out by NNT protein. Identifying individuals with hereditary glucocorticoid deficiency is essential to start life-saving glucocorticoid replacement.
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