Citation

  • Authors: Yu, T., Chang, G., Cheng, Q., Yao, R., Li, J., Xu, Y., Li, G., Ding, Y., Qing, Y., Li, N., Shen, Y., Wang, X., Wang, J.
  • Year: 2018
  • Journal: Mol Cell Endocrinol
  • Applications: in vitro / DNA / jetPRIME
  • Cell types:
    1. Name: CHO
      Description: Chinese hamster ovary cells
    2. Name: HEK-293T
      Description: Human embryonic kidney Fibroblast
      Known as: HEK293T, 293T

Abstract

SOX3, a transcription factor of the SRY-related high mobility group box family, has been implicated in the etiology of X-linked hypopituitarism. Here, we report a Chinese pedigree of X-linked hypopituitarism with variable phenotypes. Despite the complete growth hormone deficiency, the growth failure of the patients was relatively modest. A rare point variant of SOX3 (c.424C>A; p. P142T) was identified in the pedigree via target panel sequencing. An in vitro study showed that both the expression and nuclear targeting of SOX3 remained unaffected by the variant. However, increased transcriptional activation and impaired repression of beta-catenin-mediated transcription were noticed as a result of the SOX3 variant. This is the first study to report that the rare SOX3 missense variant associated with hypopituitarism possibly due to increased activation of SOX3 target genes and disregulation of beta-catenin target genes. In addition, we have expanded the phenotypic spectrum associated with SOX3 mutations.

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