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Dissociation of sodium-chloride cotransporter expression and blood pressure during chronic high dietary potassium supplementation
Robert Little, Sathish K. Murali, Søren B. Poulsen, Paul R. Grimm, Adrienne Assmus, Lei Cheng, Jessica R. Ivy, Ewout J. Hoorn, Vladimir Matchkov, Paul A. Welling, Robert A. Fenton
Robert Little, Sathish K. Murali, Søren B. Poulsen, Paul R. Grimm, Adrienne Assmus, Lei Cheng, Jessica R. Ivy, Ewout J. Hoorn, Vladimir Matchkov, Paul A. Welling, Robert A. Fenton
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Research Article Nephrology

Dissociation of sodium-chloride cotransporter expression and blood pressure during chronic high dietary potassium supplementation

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Abstract

Dietary potassium (K+) supplementation is associated with a lowering effect in blood pressure (BP), but not all studies agree. Here, we examined the effects of short- and long-term K+ supplementation on BP in mice, whether differences depend on the accompanying anion or the sodium (Na+) intake and molecular alterations in the kidney that may underlie BP changes. Relative to the control diet, BP was higher in mice fed a high NaCl (1.57% Na+) diet for 7 weeks or fed a K+-free diet for 2 weeks. BP was highest on a K+-free/high NaCl diet. Commensurate with increased abundance and phosphorylation of the thiazide sensitive sodium-chloride-cotransporter (NCC) on the K+-free/high NaCl diet, BP returned to normal with thiazides. Three weeks of a high K+ diet (5% K+) increased BP (predominantly during the night) independently of dietary Na+ or anion intake. Conversely, 4 days of KCl feeding reduced BP. Both feeding periods resulted in lower NCC levels but in increased levels of cleaved (active) α and γ subunits of the epithelial Na+ channel ENaC. The elevated BP after chronic K+ feeding was reduced by amiloride but not thiazide. Our results suggest that dietary K+ has an optimal threshold where it may be most effective for cardiovascular health.

Authors

Robert Little, Sathish K. Murali, Søren B. Poulsen, Paul R. Grimm, Adrienne Assmus, Lei Cheng, Jessica R. Ivy, Ewout J. Hoorn, Vladimir Matchkov, Paul A. Welling, Robert A. Fenton

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Figure 3

NCC is increased following low dietary K+ feeding and is responsible for the increase in BP.

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NCC is increased following low dietary K+ feeding and is responsible for...
Lysates of total kidney from animals fed control diet (NS/NK) or K+-deplete diet (NS/0K) for 2 weeks were assessed by western blotting. (A) Representative immunoblots of total NCC, phosphorylated NCC (pNCC), or proteasome 20s (P20s, loading control). Molecular weight (KDa) is shown on the right. (B and C) NCC and pNCC are significantly increased by the NS/0K diet. (D) Ratio of pNCC/NCC is not significantly different between NS/0K and NS/NK-fed animals. Data are shown as mean ± SEM with individual values shown. ***P < 0.001 by 2-tailed t test. (E) Comparison of fits analysis of curves showed a significant difference (P < 0.0001) in SBP across a 24-hour period between animals fed a high-NaCl, K+-deficient (HS/0K) diet compared with animals fed high-NaCl, normal K+ (HS/NK) diet. Over a 24-hour period, curves were significantly different (P < 0.0001) between hydrochlorothiazide-treated (HCTZ-treated) animals on a HS/0K diet compared with HS/0K diet alone. Dark/light times are shown by lower bar strip. Time 0 = 18:00 hours. Data are shown as mean ± SEM, n = 5–6 per condition. (F) HCTZ significantly reduces SBP averaged over 8 hours following injection. Data are shown as mean ± SEM with individual values shown. *P < 0.05; ***P < 0.001 by 1-way ANOVA with Dunnett’s multiple-comparison test.

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