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October 1, 2001Journal of the American Society of Nephrology143 citations

Role of KCNE1-Dependent K+ Fluxes in Mouse Proximal Tubule

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VVVolker VallonFGFlorian GrahammerKRKerstin Richter

Structured PICO

P
Population
KCNE1 knockout (-/-) and wild-type (+/+) mice
I
Intervention
KCNE1 gene knockout
C
Comparator
Wild-type (+/+) mice
O
Outcome
K+ concentration and delivery in late proximal and early distal tubular fluid, membrane depolarization, and fractional urinary excretion of fluid, Na+, Cl-, and glucosesurrogate

KCNE1-dependent K+ fluxes in the proximal tubule are essential to counteract membrane depolarization during electrogenic Na+-coupled transport, and their absence contributes to volume depletion.

Abstract

The electrochemical gradient for K+ across the luminal membrane of the proximal tubule favors K+ fluxes to the lumen. Here it was demonstrated by immunohistochemistry that KCNE1 and KCNQ1, which form together the slowly activated component of the delayed rectifying K+ current in the heart, also colocalize in the luminal membrane of proximal tubule in mouse kidney. Micropuncture experiments revealed a reduced K+ concentration in late proximal and early distal tubular fluid as well as a reduced K+ delivery to these sites in KCNE1 knockout (-/-), compared with wild-type (+/+) mice. These observations would be consistent with KCNE1-dependent K+ fluxes to the lumen in proximal tubule. Electrophysiological studies in isolated perfused proximal tubules indicated that this K+ flux is essential to counteract membrane depolarization due to electrogenic Na+-coupled transport of glucose or amino acids. Clearance studies revealed an enhanced fractional urinary excretion of fluid, Na+, Cl-, and glucose in KCNE1 -/- compared with KCNE1 +/+ mice that may relate to an attenuated transport in proximal tubule and contribute to volume depletion in these mice, as indicated by higher hematocrit values.

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Cite This Study

Vallon et al. (2001) studied this question.

synapsesocial.com/papers/6a82c47c1a90e54f711c2d2ehttps://doi.org/10.1681/asn.v12102003
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