Division of Nephrology, Department of Medicine, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan.
Hum Mutat. 2010 Dec;31(12):1304-15. doi: 10.1002/humu.21364. Epub 2010 Oct 14.
Gitelman syndrome (GS) is characterized by salt-losing hypotension, hypomagnesemia, hypokalemic metabolic alkalosis, and hypocalciuria. To better model human GS caused by a specific mutation in the thiazide-sensitive Na(+) -Cl(-) cotransporter (NCC) gene SLC12A3, we generated a nonsense Ncc Ser707X knockin mouse corresponding to human p.Ser710X (c.2135C>A), a recurrent mutation with severe phenotypes in Chinese GS patients. Compared with wild-type or heterozygous littermates, homozygous (Hom) knockin mice fully recapitulated the phenotype of human GS. The markedly reduced Ncc mRNA and virtually absent Ncc protein expression in kidneys of Hom mice was primarily due to nonsense-mediated mRNA decay (NMD) surveillance mechanisms. Expression of epithelial Na(+) channel (Enac), Ca(2+) channels (Trpv5 and Trpv6), and K(+) channels (Romk1 and maxi-K) were significantly increased. Late distal convoluted tubules (DCT) volume was increased and DCT cell ultrastructure appeared intact. High K(+) intake could not correct hypokalemia but caused a further increase in maxi-K but not Romk1 expression. Renal tissue from a patient with GS also showed the enhanced TRPV5 and ROMK1 expression in distal tubules. We suggest that the upregulation of TRPV5/6 and of ROMK1 and Maxi-K may contribute to hypocalciuria and hypokalemia in Ncc Ser707X knockin mice and human GS, respectively.
Gitelman 综合征(GS)的特征为失盐性低血压、低镁血症、低钾代谢性碱中毒和低钙尿症。为了更好地模拟人类由于噻嗪类敏感的 Na(+) -Cl(-)共转运蛋白(NCC)基因 SLC12A3 中的特定突变引起的 GS,我们生成了一个对应于人类 p.Ser710X(c.2135C>A)的无义突变的 Ncc Ser707X 敲入小鼠,这是一种在中国 GS 患者中具有严重表型的反复突变。与野生型或杂合子同窝仔相比,纯合子(Hom)敲入小鼠完全重现了人类 GS 的表型。Hom 敲入小鼠肾脏中 Ncc mRNA 的表达显著减少,Ncc 蛋白几乎不存在,这主要是由于无义介导的 mRNA 降解(NMD)监测机制。上皮钠通道(Enac)、Ca(2+) 通道(Trpv5 和 Trpv6)和 K(+) 通道(Romk1 和 maxi-K)的表达显著增加。晚期远曲小管(DCT)体积增加,DCT 细胞超微结构似乎完整。高钾摄入不能纠正低钾血症,但会导致 maxi-K 表达进一步增加,而 Romk1 表达则不会。GS 患者的肾组织也显示出 DCT 中 TRPV5 和 ROMK1 的表达增强。我们认为,TRPV5/6 和 ROMK1 和 Maxi-K 的上调可能分别导致 Ncc Ser707X 敲入小鼠和人类 GS 中的低钙尿症和低钾血症。