Studies of mice deleted for Sox3 and uc482: relevance to X-linked hypoparathyroidism

Katie U Gaynor1, Irina V Grigorieva2, Samantha M Mirczuk3

  • 1K Gaynor, Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Oxford, United Kingdom of Great Britain and Northern Ireland.

Endocrine Connections
|January 22, 2020
PubMed

Insights

X-linked hypoparathyroidism (XLHPT) is linked to chromosome X deletions and insertions. Studies show SOX3 gene expression and mouse models do not support SOX3 or uc482 absence as the cause of XLHPT.

Area of Science:

  • Genetics
  • Endocrinology
  • Molecular Biology

Background:

  • Hypoparathyroidism is characterized by low calcium and parathyroid hormone (PTH) levels.
  • X-linked hypoparathyroidism (XLHPT) involves interstitial deletion-insertions on chromosome Xq27.1, potentially affecting SOX3 regulatory elements like uc482.

Purpose of the Study:

  • To investigate the role of SOX3 expression and regulatory elements in XLHPT.
  • To determine if SOX3 or uc482 absence causes hypoparathyroidism using cellular and animal models.

Main Methods:

  • Analyzed SOX3, SNTG2, and ATP11C expression in lymphoblastoid cells from XLHPT patients.
  • Generated and analyzed male hemizygous and female heterozygous Sox3 and uc482 knockout mice under normal and low-calcium diets.

Main Results:

  • SOX3, SNTG2, and ATP11C expression levels were similar in XLHPT patient cells and controls.
  • Sox3 and uc482 knockout mice exhibited normal plasma biochemistry and did not develop hypoparathyroidism.
  • All mice, including knockout models, showed hypocalcemia and elevated PTH on a low-calcium diet, with no significant differences compared to wild-type littermates.

Conclusions:

  • Absence of SOX3 or uc482 does not appear to cause hypoparathyroidism.
  • The genetic mechanisms underlying XLHPT are likely more complex than direct disruption of SOX3 or uc482.