AVPR2 variants and mutations in nephrogenic diabetes insipidus: Review and missense mutation significance
β Scribed by Elias Spanakis; Edrice Milord; Claudia Gragnoli
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 290 KB
- Volume
- 217
- Category
- Article
- ISSN
- 0021-9541
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
Almost 90% of nephrogenic diabetes insipidus (NDI) is due to mutations in the arginineβvasopressin receptor 2 gene (AVPR2). We retrospectively examined all the published mutations/variants in AVPR2. We planned to perform a comprehensive review of all the AVPR2 mutations/variants and to test whether any amino acid change causing a missense mutation is significantly more or less common than others. We performed a Medline search and collected detailed information regarding all AVPR2 mutations and variants. We performed a frequency comparison between mutated and wildβtype amino acids and codons. We predicted the mutation effect or reported it based on published in vitro studies. We also reported the ethnicity of each mutation/variant carrier. In summary, we identified 211 AVPR2 mutations which cause NDI in 326 families and 21 variants which do not cause NDI in 71 NDI families. We described 15 different types of mutations including missense, frameshift, inframe deletion, deletion, insertion, nonsense, duplication, splicing and combined mutations. The missense mutations represent the 55.83% of all the NDI published families. Arginine and tyrosine are significantly (Pβ=β4.07Eβ08 and Pβ=β3.27Eβ04, respectively) the AVPR2 most commonly mutated amino acids. Alanine and glutamate are significantly (Pβ=β0.009 and Pβ=β0.019, respectively) the least mutated AVPR2 amino acids. The spectrum of mutations varies from rare gene variants or polymorphisms not causing NDI to rare mutations causing NDI, among which arginine and tyrosine are the most common missense. The AVPR2 mutations are spread worldβwide. Our study may serve as an updated review, comprehensive of all AVPR2 variants and specific gene locations. J. Cell. Physiol. 217: 605β617, 2008. Β© 2008 WileyβLiss, Inc.
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