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导致肾性尿崩症的水通道蛋白2(AQP2)基因两个新错义突变的特征分析

Characterization of two novel missense mutations in the AQP2 gene causing nephrogenic diabetes insipidus.

作者信息

Iolascon Achille, Aglio Veruska, Tamma Grazia, D'Apolito Maria, Addabbo Francesco, Procino Giuseppe, Simonetti Maria Carmela, Montini Giovanni, Gesualdo Loreto, Debler Erik W, Svelto Maria, Valenti Giovanna

机构信息

Department of Biochemistry and Biomedical Technologies, University Federico II--CEINGE, Naples, Italy.

出版信息

Nephron Physiol. 2007;105(3):p33-41. doi: 10.1159/000098136. Epub 2006 Dec 28.

Abstract

Here, we report the aquaporin 2 (AQP2) mutational analysis of a patient with nephrogenic diabetes insipidus heterozygote due to two novel missense mutations. Direct sequencing of DNA in the male patient revealed that he was compound heterozygote for two mutations in the AQP2 gene: a thymine-to-adenine transversion at position 450 (c.450T>A) in exon 2 and a guanine-to-thymine at nucleotide position 643 (c.643G>T) in exon 4. The double heterozygous 450T>A and 643G>T transversion causes the amino acid substitution D150E and G215C. Direct sequencing of exons 2 and 4 of the AQP2 gene from each of the parents revealed that the c.450T>A mutation was inherited from the father while the c.643G>T mutation was inherited from the mother. Analysis of AQP2 excretion demonstrated that no AQP2 was detectable in the urine of the proband, whereas normal AQP2 levels were measured in both parents. When expressed in renal cells, both proteins were retarded in the endoplasmic reticulum and no redistribution was observed after forskolin stimulation. Of note, homology modeling revealed that the two mutations involve two highly conserved residues providing important clues about the role of the wt residues in AQP2 stability and function.

摘要

在此,我们报告了一名因两个新的错义突变导致的肾性尿崩症杂合子患者的水通道蛋白2(AQP2)突变分析。对该男性患者的DNA进行直接测序发现,他是AQP2基因两个突变的复合杂合子:外显子2中第450位的胸腺嘧啶到腺嘌呤的颠换(c.450T>A)和外显子4中核苷酸位置643的鸟嘌呤到胸腺嘧啶的颠换(c.643G>T)。双杂合的450T>A和643G>T颠换导致氨基酸替换D150E和G215C。对每个亲本的AQP2基因外显子2和4进行直接测序发现,c.450T>A突变来自父亲,而c.643G>T突变来自母亲。AQP2排泄分析表明,先证者尿液中未检测到AQP2,而其父母的AQP2水平正常。当在肾细胞中表达时,两种蛋白质在内质网中滞留,在福斯可林刺激后未观察到重新分布。值得注意的是,同源建模显示这两个突变涉及两个高度保守的残基,这为野生型残基在AQP2稳定性和功能中的作用提供了重要线索。

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