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Activating Mutation of the Renal Epithelial Chloride Channel ClC-Kb Predisposing to Hypertension

 

作者: Nikola Jeck,   Siegfried Waldegger,   Angelika Lampert,   Christoph Boehmer,   Petra Waldegger,   Philipp Lang,   Bernd Wissinger,   Björn Friedrich,   Teut Risler,   Robert Moehle,   Undine Lang,   Peter Zill,   Brigitta Bondy,   Elke Schaeffeler,   Stephen Asante-Poku,   Hannsjörg Seyberth,   Matthias Schwab,   Florian Lang,  

 

期刊: Hypertension: Journal of The American Heart Association  (OVID Available online 2004)
卷期: Volume 43, issue 6  

页码: 1175-1181

 

ISSN:0194-911X

 

年代: 2004

 

出版商: OVID

 

关键词: blood pressure;ethnic groups;genes;glomerular filtration rate;hypertension;genetic;ion transport;kidney

 

数据来源: OVID

 

摘要:

The chloride channel ClC-Kb is expressed in the basolateral cell membrane of the distal nephron and participates in renal NaCl reabsorption. Loss-of-function mutations of ClC-Kb lead to classic Bartter syndrome, a rare salt-wasting disorder. Recently, we identified the ClC-KbT481Spolymorphism, which confers a strong gain-of-function effect on the ClC-Kb chloride channel. The present study has been performed to explore the prevalence of the mutation and its functional significance in renal salt handling and blood pressure regulation. As evident from electrophysiological analysis with the 2-electrode voltage-clamp technique, heterologous expression of ClC-KbT481Sin Xenopus oocytes gave rise to a current that was 7-fold larger than the current produced by wild-type ClC-Kb. The prevalence of the mutant allele was significantly higher in an African population from Ghana (22%) than in whites (12%). As tested in 1 white population, carriers of ClC-KbT481Swere associated with significantly higher systolic (by ≈6.0 mm Hg) and diastolic (by ≈4.2 mm Hg) blood pressures and significantly higher prevalence (45% versus 25%) of hypertensive (≥140/90 mm Hg) blood pressure levels. Individuals carrying ClC-KbT481Shad significantly higher plasma Na+concentrations and significantly decreased glomerular filtration rate. In conclusion, the mutation ClC-KbT481Sof the renal epithelial Cl−channel ClC-Kb strongly activates ClC-Kb chloride channel function in vitro and may predispose to the development of essential hypertension in vivo.

 

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