Nephrogenic diabetes insipidus: update of genetic and clinical aspects
Open Access
- 5 March 2004
- journal article
- research article
- Published by Oxford University Press (OUP) in Nephrology Dialysis Transplantation
- Vol. 19 (6) , 1351-1353
- https://doi.org/10.1093/ndt/gfh172
Abstract
Ten years have passed since the cloning and molecular identification of the vasopressin V2 receptor (V2R) and aquaporin-2 water channel (AQP2), a pair of molecules whose genetic mutations have been established to cause hereditary nephrogenic diabetes insipidus (NDI), a human disease characterized by an inability to concentrate urine. Gene identification and mutation searches in NDI families have led to the identification of numerous patients, which in turn has provided a more detailed view of the clinical characteristics of this disease entity. Human genetic analyses of these types have also provided insight into how AQP2 protein is regulated inside the cell and how mutant AQP2s come to resist proper regulation. This knowledge of cellular biology will form the basis for the development of new treatments. The present Comment focuses on recent advances in our understanding of the genetic and clinical aspects of NDI.Keywords
This publication has 17 references indexed in Scilit:
- Combined dipyridamole-exercise stress echocardiography for detection of myocardial ischemia in hemodialysis patients: An alternative to stress nuclear imagingAmerican Journal of Kidney Diseases, 2002
- Renal Concentrating and Diluting Function in Deficiency of Specific Aquaporin GenesNephron Experimental Nephrology, 2002
- Desmopressin for nocturnal enuresis in nephrogenic diabetes insipidusThe Lancet, 2002
- Aquaporins in the Kidney: From Molecules to MedicinePhysiological Reviews, 2002
- Three Families with Autosomal Dominant Nephrogenic Diabetes Insipidus Caused by Aquaporin-2 Mutations in the C-TerminusAmerican Journal of Human Genetics, 2001
- Defective Urinary Concentrating Ability Due to a Complete Deficiency of Aquaporin-1New England Journal of Medicine, 2001
- Defective Processing and Trafficking of Water Channels in Nephrogenic Diabetes insipidusNephron Experimental Nephrology, 2000
- Aldose Reductase-Deficient Mice Develop Nephrogenic Diabetes InsipidusMolecular and Cellular Biology, 2000
- Overt nephrogenic diabetes insipidus in mice lacking the CLC-K1 chloride channelNature Genetics, 1999
- An aquaporin-2 water channel mutant which causes autosomal dominant nephrogenic diabetes insipidus is retained in the Golgi complex.Journal of Clinical Investigation, 1998