Identification of a novel WNK4 mutation in Chinese patients with pseudohypoaldosteronism type II.

Nephron Physiology Pub Date : 2011-01-01 Epub Date: 2010-12-24 DOI:10.1159/000321879
Chong Zhang, Zhaohui Wang, Jingyuan Xie, Fuhong Yan, Weiming Wang, Xiaobei Feng, Wen Zhang, Nan Chen
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引用次数: 13

Abstract

Background: It has been reported that mutations in WNK1 and WNK4 cause pseudohypoaldosteronism type II (PHA2), an autosomal dominant renal disease. WNK kinase proteins are expressed in the kidney and regulate ion transport including the thiazide-sensitive sodium chloride cotransporter (NCC). In this report, we screened 4 Chinese PHA2 pedigrees for WNK4 mutations, identified a novel mutation, and studied its effects on NCC protein trafficking in vitro.

Methods: The patients' genomic DNA was extracted from peripheral leukocytes. Sequence analysis was performed by PCR amplification of the 19 exons of WNK4. The wild-type or mutant WNK4 was coexpressed with NCC in HEK293 cells. We measured the effect of wild-type WNK4 compared to the mutant WNK4 on NCC protein surface expression.

Results: A novel missense mutation in WNK4, K1169E, was identified in 1 of the 4 pedigrees. Analysis of confocal images showed that K1169E lost its inhibitory effect on NCC surface expression compared to wild-type WNK4 when expressed in HEK293 cells, while it did not change NCC total protein expression.

Conclusions: We identified an unreported disease-causing WNK4 missense mutation, K1169E, in 1 Chinese PHA2 pedigree. This mutation appears to be a 'loss of function' of NCC inhibition and suggests that some important functional roles lie in the 2nd coiled-coil domain of WNK4.

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中国II型假性醛固酮减少症患者中一种新的WNK4突变的鉴定
背景:据报道,WNK1和WNK4突变可导致II型假性醛固酮减少症(PHA2),这是一种常染色体显性肾病。WNK激酶蛋白在肾脏中表达,并调节包括噻嗪类敏感氯化钠共转运体(NCC)在内的离子转运。在本报告中,我们筛选了4个中国PHA2家系的WNK4突变,鉴定了一个新的突变,并研究了其对体外NCC蛋白转运的影响。方法:从患者外周血白细胞中提取基因组DNA。通过PCR扩增WNK4的19个外显子进行序列分析。野生型或突变型WNK4在HEK293细胞中与NCC共表达。我们测量了野生型WNK4与突变型WNK4对NCC蛋白表面表达的影响。结果:在4个家系中的1个家系中发现了一种新的WNK4错义突变K1169E。共聚焦图像分析显示,与野生型WNK4相比,K1169E在HEK293细胞中表达时失去了对NCC表面表达的抑制作用,但不改变NCC总蛋白的表达。结论:我们在1个中国PHA2家系中发现了一个未报道的致病WNK4错义突变K1169E。这种突变似乎是NCC抑制的“功能丧失”,表明一些重要的功能作用存在于WNK4的第2螺旋结构域。
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来源期刊
Nephron Physiology
Nephron Physiology 医学-泌尿学与肾脏学
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>12 weeks
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Contents Vol. 128, 2014 Contents Vol. 26, 2014 Front & Back Matter Front & Back Matter Contents Vol. 124, 2013
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