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Vasopressin receptor mutations and nephrogenic diabetes insipidus
1Department of Anesthesiology, University of California, Los Angeles School of Medicine 90095, USA. marielb@ucla.ed
Abstract:
X-linked recessive nephrogenic diabetes insipidus is caused by mutations in the gene encoding the V2 vasopressin receptor (V2R), the mediator of the antidiuretic effect of arginine vasopressin (AVP) in mammalian kidneys. Upon binding to AVP, the receptor activates the G protein Gs, stimulating a phosphorylation cascade that promotes translocation of presynthesized water channels to the apical surface of the principal cells lining the last segments of the nephron. The presence of these channels allows the flow of water from the hypotonic lumen of the nephron into the hypertonic interstitium. More than 100 different mutations have been identified since the receptor gene was characterized--in most cases one per family, although some families bear two and three mutations in the same gene. The frequency of the de novo mutations identified suggests that the DNA at the end of the long arm of the X chromosome is very susceptible to alteration. The mutations are scattered within the coding region, not confined to a particular segment of the receptor protein, and in most cases confined to a single amino acid change that significantly reduces the number of receptors present on the plasma membrane. Some mutations do not affect protein synthesis but significantly reduce the coupling efficiency between the receptor and G protein. Analysis of the biochemical impact of the mutations has provided valuable information about the synthesis and regulation of the receptor.
Insights
Mutations in the V2 vasopressin receptor (V2R) gene cause X-linked nephrogenic diabetes insipidus. These genetic alterations disrupt water channel function in kidneys, impacting fluid balance.
Area of Science:
- Nephrology
- Genetics
- Molecular Biology
Background:
- X-linked nephrogenic diabetes insipidus results from V2 vasopressin receptor (V2R) gene mutations.
- The V2R mediates the antidiuretic action of arginine vasopressin (AVP) in mammalian kidneys.
Purpose of the Study:
- To analyze the impact of V2R gene mutations on receptor synthesis, regulation, and function.
- To understand the molecular mechanisms underlying X-linked nephrogenic diabetes insipidus.
Main Methods:
- Genetic analysis of V2R gene mutations.
- Biochemical assessment of V2R protein synthesis and function.
- Analysis of V2R interaction with G protein Gs.
Main Results:
- Over 100 distinct V2R mutations identified, often unique to families.
- Mutations are dispersed throughout the coding region, frequently causing single amino acid changes.
- Some mutations impair receptor presence on the plasma membrane; others reduce receptor-G protein coupling efficiency.
Conclusions:
- V2R gene mutations are the primary cause of X-linked nephrogenic diabetes insipidus.
- Mutations significantly affect V2R function, leading to impaired water reabsorption.
- Understanding these mutations provides insights into V2R synthesis and regulation.
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