3β-Hydroxysteroid dehydrogenase (3β-HSD) deficiency is a rare form of congenital adrenal hyperplasia (CAH), typically presenting with salt-wasting and, in females, ambiguous genitalia, or undervirilization in males.
We report the case of a 10-day-old female infant who presented with feeding difficulties, generalized skin hyperpigmentation, and hyperkalemia, yet had completely normal external genitalia. Genetic analysis identified compound heterozygous variants in the
HSD3B2
gene: a novel, maternally inherited in-frame deletion, c.64_66del (p.Leu22del), currently classified as a variant of uncertain significance (VUS) according to ACMG/AMP guidelines; and a paternally inherited, likely pathogenic missense variant, c.674 T>A (p.Val225Asp). The c.64_66del variant has not been previously reported; it forms compound heterozygosity with the paternal likely pathogenic variant, consistent with an autosomal recessive inheritance pattern. However, its independent pathogenicity remains to be confirmed by functional studies.
This case emphasizes that 3β-HSD deficiency should be suspected in neonates with salt-wasting manifestations, even with completely normal external genitalia (Prader stage 0). The identification of this novel c.64_66del VUS adds to the allelic repertoire of the
HSD3B2
gene and underscores the importance of early genetic testing, which strongly supports the diagnosis while also emphasizing the need for functional studies to clarify the pathogenicity of uncertain variants.
Yu-Ling Zhang, Bao-An Lin, Liu-Hua Liao· Journal of Medical Case Repo...· 0 citations
Hemophagocytic lymphohistiocytosis (HLH) is a severe immunological disorder characterized by dysregulated immune activation. Pathogenic variants in HLH-causative genes serve as diagnostic criteria and guide treatment decisions. However, known genes do not fully explain the molecular basis of many cases, and the polygenic contribution to HLH susceptibility remains poorly characterized. Here, we retrospectively analyzed whole-exome sequencing data from 1241 patients with clinically diagnosed or suspected HLH to characterize the HLH genetic landscape. Rare variant association analysis identified two candidate susceptibility genes,
IKBKG
and
DDX3X
. Functional experiments showed that
IKBKG
knockdown impaired NK cell cytotoxicity and degranulation, supporting a contributory role of
IKBKG
in HLH-related immune dysfunction. Exploratory common variant analysis identified potential susceptibility loci, and an integrated model incorporating rare variant burden and polygenic risk score achieved an AUC of 0.71 in this cohort. These findings expand understanding of HLH genetic architecture and support contributions from both rare and common variants.