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在患有肾性尿崩症的无血缘关系的日本家族中,血管加压素V2受体基因的两个新突变。

Two novel mutations in the vasopressin V2 receptor gene in unrelated Japanese kindreds with nephrogenic diabetes insipidus.

作者信息

Tsukaguchi H, Matsubara H, Aritaki S, Kimura T, Abe S, Inada M

机构信息

Second Department of Internal Medicine, Kansai Medical University, Osaka, Japan.

出版信息

Biochem Biophys Res Commun. 1993 Dec 15;197(2):1000-10. doi: 10.1006/bbrc.1993.2578.

Abstract

Nephrogenic diabetes insipidus (NDI) is a rare X-linked disorder exhibiting renal resistance to the antidiuretic action of arginine vasopressin (AVP). Recent elucidation of the vasopressin V2 (renal type) receptor gene structure has enabled us to test the hypothesis that the genetic defect in the V2 receptor is the likely molecular basis of NDI. By using the polymerase chain reaction (PCR)-direct sequencing, we identified novel V2 receptor gene mutations in two unrelated Japanese kindreds with NDI. In the male patients of kindred A, a single codon deletion in one of two consecutive GTC triplets (nucleotide 832 to 837) was detected. This base change resulted in the loss of a valine residue in the 6th transmembrane domain. In the affected males of kindred B, a G to C substitution was found at nucleotide 428, altering codon 143 from arginine (CGT) to proline (CCT) in the second cytoplasmic domain. PCR-single strand conformation polymorphism (SSCP) analysis of family members demonstrated that the mutations cosegregated with clinically affected individuals and were absent in normal subjects. Our results suggest that different V2 receptor defects could be responsible for AVP resistance in individual NDI kindreds.

摘要

肾性尿崩症(NDI)是一种罕见的X连锁疾病,表现为肾脏对精氨酸加压素(AVP)的抗利尿作用产生抵抗。最近对加压素V2(肾型)受体基因结构的阐明,使我们能够检验V2受体基因缺陷可能是NDI分子基础的这一假说。通过使用聚合酶链反应(PCR)直接测序,我们在两个无关的日本NDI家系中鉴定出了新的V2受体基因突变。在家系A的男性患者中,检测到两个连续的GTC三联体(核苷酸832至837)之一中单个密码子缺失。这种碱基变化导致第6个跨膜结构域中一个缬氨酸残基的缺失。在家系B的患病男性中,在核苷酸428处发现了G到C的替换,将第二个胞质结构域中的密码子143从精氨酸(CGT)改变为脯氨酸(CCT)。对家庭成员进行的PCR单链构象多态性(SSCP)分析表明,这些突变与临床受累个体共分离,而在正常受试者中不存在。我们的结果表明,不同的V2受体缺陷可能是个别NDI家系中AVP抵抗的原因。

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