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Central diabetes insipidus associated with impaired renal aquaporin-1 expression in mice lacking liver X receptor β.
- Source :
-
Proceedings of the National Academy of Sciences of the United States of America [Proc Natl Acad Sci U S A] 2012 Feb 21; Vol. 109 (8), pp. 3030-4. Date of Electronic Publication: 2012 Feb 07. - Publication Year :
- 2012
-
Abstract
- The present study demonstrates a key role for the oxysterol receptor liver X receptor β (LXRβ) in the etiology of diabetes insipidus (DI). Given free access to water, LXRβ(-/-) but not LXRα(-/-) mice exhibited polyuria (abnormal daily excretion of highly diluted urine) and polydipsia (increased water intake), both features of diabetes insipidus. LXRβ(-/-) mice responded to 24-h dehydration with a decreased urine volume and increased urine osmolality. To determine whether the DI was of central or nephrogenic origin, we examined the responsiveness of the kidney to arginine vasopressin (AVP). An i.p. injection of AVP to LXRβ(-/-) mice revealed a partial kidney response: There was no effect on urine volume, but there was a significant increase of urine osmolality, suggesting that DI may be caused by a defect in central production of AVP. In the brain of WT mice LXRβ was expressed in the nuclei of magnocellular neurons in the supraoptic and paraventricular nuclei of the hypothalamus. In LXRβ(-/-) mice the expression of AVP was markedly decreased in the magnocellular neurons as well as in urine collected over a 24-h period. The persistent high urine volume after AVP administration was traced to a reduction in aquaporin-1 expression in the kidney of LXRβ(-/-) mice. The LXR agonist (GW3965) in WT mice elicited an increase in urine osmolality, suggesting that LXRβ is a key receptor in controlling water balance with targets in both the brain and kidney, and it could be a therapeutic target in disorders of water balance.
- Subjects :
- Animals
Arginine Vasopressin administration & dosage
Arginine Vasopressin pharmacology
Arginine Vasopressin urine
Benzoates administration & dosage
Benzoates pharmacology
Benzylamines administration & dosage
Benzylamines pharmacology
Body Water
Dehydration blood
Dehydration complications
Dehydration physiopathology
Dehydration urine
Diabetes Insipidus, Neurogenic complications
Diabetes Insipidus, Neurogenic pathology
Diabetes Insipidus, Neurogenic physiopathology
Female
Kidney pathology
Kidney physiopathology
Liver X Receptors
Mice
Neurons drug effects
Neurons metabolism
Orphan Nuclear Receptors metabolism
Osmolar Concentration
Paraventricular Hypothalamic Nucleus drug effects
Paraventricular Hypothalamic Nucleus metabolism
Paraventricular Hypothalamic Nucleus pathology
Paraventricular Hypothalamic Nucleus physiopathology
Polydipsia blood
Polydipsia complications
Polydipsia physiopathology
Polydipsia urine
Polyuria blood
Polyuria complications
Polyuria physiopathology
Polyuria urine
Supraoptic Nucleus drug effects
Supraoptic Nucleus metabolism
Supraoptic Nucleus pathology
Supraoptic Nucleus physiopathology
Water-Electrolyte Balance physiology
Aquaporin 1 metabolism
Diabetes Insipidus, Neurogenic metabolism
Kidney metabolism
Orphan Nuclear Receptors deficiency
Subjects
Details
- Language :
- English
- ISSN :
- 1091-6490
- Volume :
- 109
- Issue :
- 8
- Database :
- MEDLINE
- Journal :
- Proceedings of the National Academy of Sciences of the United States of America
- Publication Type :
- Academic Journal
- Accession number :
- 22323586
- Full Text :
- https://doi.org/10.1073/pnas.1200588109