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Glucocorticosteroid resistance in humans. Elucidation of the molecular mechanisms and implications for

C A Stratakis1, M Karl, H M Schulte

  • 1Developmental Endocrinology Branch (DEB) National Institute of Child Health & Human Development, (NICHD) National Institutes of Health (NIH), Bethesda, Maryland 20892.

Insights

Familial glucocorticoid resistance (FGR) is a rare genetic disorder where the body doesn't respond to glucocorticoids, leading to high hormone levels. Mutations in the glucocorticoid receptor gene cause this variable condition.

Area of Science:

  • Endocrinology
  • Genetics
  • Molecular Biology

Background:

  • Familial glucocorticoid resistance (FGR) is a rare hereditary disorder.
  • Characterized by hypercortisolism (high cortisol levels) without Cushing's syndrome stigmata.
  • Caused by impaired glucocorticoid receptor (GR) function or reduced GR concentration.

Observation:

  • Elevated circulating corticotropin (ACTH) and cortisol levels.
  • Excess secretion of adrenal androgens and mineralocorticoid precursors.
  • Variable clinical presentations, including fatigue, hypertension, hypokalemic alkalosis, and hyperandrogenism.

Findings:

  • Molecular defects, such as GR gene mutations or microdeletions, lead to partial glucocorticoid resistance.
  • Clinical variability may stem from differential tissue sensitivity to mineralocorticoids/androgens or specific GR defects.
  • Somatic GR mutations in corticotropinomas suggest a role in tumorigenesis.

Implications:

  • Understanding FGR elucidates the critical role of glucocorticoids in human physiology.
  • Identifies potential mechanisms for glucocorticoid resistance in various clinical conditions.
  • Highlights the complex interplay between genetics, hormone resistance, and disease pathogenesis.

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