Salt restriction induces pseudohypoaldosteronism type 1 in mice expressing low levels of the β-subunit of the amiloride-sensitive epithelial sodium channel
Salt restriction induces pseudohypoaldosteronism type 1 in mice expressing low levels of the β-subunit of the amiloride-sensitive epithelial sodium channel
The amiloride-sensitive epithelial sodium channel (ENaC) is a heteromultimer of three homologous subunits (α-, β-, and γ-subunits). To study the role of the β-subunit in vivo , we analyzed mice in which the βENaC gene locus was disrupted. These mice showed low levels of βENaC mRNA expression in kidney (≈1%), lung (≈1%), and colon (≈4%). In homozygous mutant βENaC mice, no βENaC protein could be detected with immunofluorescent staining. At birth, there was a small delay in lung-liquid clearance that paralleled diminished amiloride-sensitive Na + absorption in tracheal explants. With normal salt intake, these mice showed a normal growth rate. However, in vivo , adult βENaC m/m mice exhibited a significantly reduced ENaC activity in colon and elevated plasma aldosterone levels, suggesting hypovolemia and pseudohypoaldosteronism type 1. This phenotype was clinically silent, as βENaC m/m mice showed no weight loss, normal plasma Na + and K + concentrations, normal blood pressure, and a compensated metabolic acidosis. On low-salt diets, βENaC-mutant mice developed clinical symptoms of an acute pseudohypoaldosteronism type 1 (weight loss, hyperkalemia, and decreased blood pressure), indicating that βENaC is required for Na + conservation during salt deprivation.
- University of Michigan–Flint United States
- University of North Carolina at Chapel Hill United States
- University Hospital of Lausanne Switzerland
- Radboud University Nijmegen Netherlands
- University of Lausanne Switzerland
Mice, Knockout, Genomic Library, Moleculaire en funktionele karakterisering van Ca2+-kanalen in enterocyten, Genotype, Colon, Pseudohypoaldosteronism, Body Weight, Homozygote, Sodium, Blood Pressure, Diet, Sodium-Restricted, Kidney, Molecular and functional characterization of Ca2+ channels in enterocytes, Sodium Channels, Amiloride, Trachea, Mice, Liver, Animals, Epithelial Sodium Channels, Aldosterone, Lung
Mice, Knockout, Genomic Library, Moleculaire en funktionele karakterisering van Ca2+-kanalen in enterocyten, Genotype, Colon, Pseudohypoaldosteronism, Body Weight, Homozygote, Sodium, Blood Pressure, Diet, Sodium-Restricted, Kidney, Molecular and functional characterization of Ca2+ channels in enterocytes, Sodium Channels, Amiloride, Trachea, Mice, Liver, Animals, Epithelial Sodium Channels, Aldosterone, Lung
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