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Colocalization of 11 beta-hydroxysteroid dehydrogenase type II and mineralocorticoid receptor in human epithelia
G Hirasawa1, H Sasano, K Takahashi
1Department of Pathology, Tohoku University School of Medicine, Sendai, Japan.
Abstract:
The enzyme 11 beta-hydroxysteroid dehydrogenase type II (11 beta HSD2) has been shown to confer specificity on mineralocorticoid receptors (MR) by inactivating glucocorticoids. In the present study we examined the colocalization of 11 beta HSD2 and MR in various exocrine and secretory glands by immunostaining of serial mirror tissue sections with subsequent computerized image analysis. Both 11 beta HSD2 and MR proteins were expressed in the same cells in the distal convoluted tubules, Henle's loop, and collecting tubules of the kidney and the absorptive epithelia of duodenum, jejunum, ileum, colon, and excretory ducts of anal and esophageal glands. Significantly, 11 beta HSD2 and MR immunoreactivity also colocalized in the respiratory tract, in collecting ducts of the tracheal and bronchial glands, ciliated bronchial epithelial cells, and type II alveolar epithelial cells, suggesting important and unexpected roles for mineralocorticoids in the lung. In the skin, 11 beta HSD2 and MR were present only in excretory ducts of eccrine sweat glands, but not in sebaceous or apocrine glands. In eccrine glands, MR immunoreactivity was present in the basal cells of excretory ducts, while 11 beta HSD2 immunoreactivity was localized in the luminal cells. Neither 11 beta HSD2 nor MR proteins were expressed in the lacrimal gland, prostate, bile ducts, gall bladder, urinary bladder, urethra, or ureter. These results indicate that 11 beta HSD2 protein colocalizes with MR protein in the great majority of sodium-transporting epithelia involved in serous secretion and supports the proposal that 11 beta HSD2 is a pivotal determinant of mineralocorticoid receptor occupancy in man. Furthermore, our demonstration of colocalization in discrete areas of the lung suggests that mineralocorticoid agonists or antagonists, and/or inhibitors of 11 beta HSD2, may have unexpected applications in respiratory disease.
Insights
The enzyme 11 beta-hydroxysteroid dehydrogenase type II (11 beta HSD2) colocalizes with mineralocorticoid receptors (MR) in key sodium-transporting epithelia, including unexpected lung tissues. This finding highlights 11 beta HSD2
Area of Science:
- Endocrinology and Molecular Biology
- Renal Physiology
- Epithelial Biology
Background:
- The enzyme 11 beta-hydroxysteroid dehydrogenase type II (11 beta HSD2) is crucial for mineralocorticoid receptor (MR) specificity by inactivating glucocorticoids.
- Understanding the distribution of 11 beta HSD2 and MR is essential for elucidating mineralocorticoid signaling in various tissues.
Purpose of the Study:
- To investigate the colocalization patterns of 11 beta HSD2 and MR proteins in a wide range of human exocrine and secretory glands.
- To identify potential novel roles for mineralocorticoids in tissues where 11 beta HSD2 and MR co-expression is observed.
Main Methods:
- Immunohistochemical staining of serial mirror tissue sections.
- Computerized image analysis to assess the co-localization of 11 beta HSD2 and MR proteins at the cellular level.
- Examination of tissues including kidney, gastrointestinal tract, respiratory tract, skin, and other exocrine glands.
Main Results:
- 11 beta HSD2 and MR were co-expressed in cells of the kidney tubules, gastrointestinal absorptive epithelia, and excretory ducts of anal and esophageal glands.
- Significant co-localization was found in the respiratory tract, including tracheal and bronchial glands, ciliated bronchial epithelial cells, and type II alveolar cells.
- In the skin, co-expression was limited to eccrine sweat gland excretory ducts, with distinct cellular localization of MR and 11 beta HSD2.
Conclusions:
- 11 beta HSD2 protein co-localizes with MR protein in most sodium-transporting epithelia involved in serous secretion, supporting its role in MR occupancy.
- The unexpected co-localization in the lung suggests significant roles for mineralocorticoids in respiratory function and disease.
- Targeting mineralocorticoid pathways or 11 beta HSD2 may offer new therapeutic strategies for respiratory conditions.