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January 22, 2026Asian Journal of Andrology0 citationsOpen Access

Clinical features and genetic analysis of androgen receptor gene variants in 30 prepubertal patients with androgen insensitivity syndrome

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JLJia-Nan LiJWJiang WeiJHJing Hui

Key Points

  • This study aims to explore the clinical features and genetic variants of the androgen receptor gene in prepubertal patients with androgen insensitivity syndrome.
  • Retrospective analysis of 30 prepubertal patients with androgen insensitivity syndrome.
  • Next-generation sequencing conducted to identify genetic variants in the androgen receptor gene.
  • Classification of variants into likely pathogenic, pathogenic, and uncertain significance.
  • Identified 24 variants in the androgen receptor gene, including 20 missense, 1 nonsense, and 3 splice-site variants.
  • Seven novel variants detected in eight patients.
  • Fifteen variants classified as likely pathogenic, eight as pathogenic, and one as uncertain significance.
  • The ligand-binding domain harbored 10 variants, while the DNA-binding domain had 5 variants.

Abstract

Androgen insensitivity syndrome (AIS; Online Mendelian Inheritance in Man OMIM; #300068) is an X-linked recessive disorder caused by pathogenic variants in the androgen receptor ( AR ) gene located in the Xq11-q13 region. In this retrospective study of 30 patients with AIS, next-generation sequencing identified 24 variants in AR , including 20 missense, 1 nonsense, and 3 splice-site variants. Seven novel variants were detected in 8 patients. Of the 24 variants, 15 were classified as likely pathogenic, 8 as pathogenic, and 1 as of uncertain significance. Variants included 5 de novo and 24 familial cases. These AR variants were predominantly located in the functional domains, with the ligand-binding domain (LBD) harboring 10 variants, the DNA-binding domain (DBD) harboring 5 variants, the N-terminal domain (NTD) harboring 2 variants, and the hinge region (HR) harboring 1 variant. The highest variant detection rate occurred in exon 5 (11/30), followed by exon 3 (9/30). These findings advance our understanding of genotype including 20 missense, 1 nonsense, and 3 splice-site variants through the identification of 7 novel variants.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e25f7https://doi.org/10.4103/aja202578
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