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Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion

BACKGROUND: In vitro studies suggest that nephron nitric oxide synthase 3 (NOS3) modulates tubule Na(+) transport. METHODS AND RESULTS: To assess nephron NOS3 relevance in vivo, knockout (KO) mice with doxycycline‐inducible nephron‐wide deletion of NOS3 were generated. During 1 week of salt loading,...

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Autores principales: Gao, Yang, Stuart, Deborah, Takahishi, Takamune, Kohan, Donald E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6064857/
https://www.ncbi.nlm.nih.gov/pubmed/29997131
http://dx.doi.org/10.1161/JAHA.118.009236
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author Gao, Yang
Stuart, Deborah
Takahishi, Takamune
Kohan, Donald E.
author_facet Gao, Yang
Stuart, Deborah
Takahishi, Takamune
Kohan, Donald E.
author_sort Gao, Yang
collection PubMed
description BACKGROUND: In vitro studies suggest that nephron nitric oxide synthase 3 (NOS3) modulates tubule Na(+) transport. METHODS AND RESULTS: To assess nephron NOS3 relevance in vivo, knockout (KO) mice with doxycycline‐inducible nephron‐wide deletion of NOS3 were generated. During 1 week of salt loading, KO mice, as compared with controls, had higher arterial pressure and Na(+) retention, a tendency towards reduced plasma renin concentration, and unchanged glomerular filtration rate. Chronic high salt‐treated KO mice had modestly decreased total NCC and total SPAK/OSR1 versus controls, however percent phosphorylation of NCC (at T(53)) and of SPAK/OSR1 was increased. In contrast, total and phosphorylated NKCC2 (at T(96/101)) were suppressed by 50% each in KO versus control mice after chronic salt intake. In response to an acute salt load, KO mice had delayed urinary Na(+) excretion versus controls; this delay was completely abolished by furosemide, partially reduced by hydrochlorothiazide, but not affected by amiloride. After 4 hours of an acute salt load, phosphorylated and total NCC were elevated in KO versus control mice. Acute salt loading did not alter total NKCC2 or SPAK/OSR1 in KO versus control mice but increased the percent phosphorylation of NKCC2 (at T(96/101) and S(126)) and SPAK/OSR1 in KO versus control mice. CONCLUSIONS: These findings indicate that nephron NOS3 is involved in blood pressure regulation and urinary Na(+) excretion during high salt intake. Nephron NOS3 appears to regulate NKCC2 and NCC primarily during acute salt loading. These effects of NOS3 may involve SPAK/OSR1 as well as other pathways.
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spelling pubmed-60648572018-08-07 Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion Gao, Yang Stuart, Deborah Takahishi, Takamune Kohan, Donald E. J Am Heart Assoc Original Research BACKGROUND: In vitro studies suggest that nephron nitric oxide synthase 3 (NOS3) modulates tubule Na(+) transport. METHODS AND RESULTS: To assess nephron NOS3 relevance in vivo, knockout (KO) mice with doxycycline‐inducible nephron‐wide deletion of NOS3 were generated. During 1 week of salt loading, KO mice, as compared with controls, had higher arterial pressure and Na(+) retention, a tendency towards reduced plasma renin concentration, and unchanged glomerular filtration rate. Chronic high salt‐treated KO mice had modestly decreased total NCC and total SPAK/OSR1 versus controls, however percent phosphorylation of NCC (at T(53)) and of SPAK/OSR1 was increased. In contrast, total and phosphorylated NKCC2 (at T(96/101)) were suppressed by 50% each in KO versus control mice after chronic salt intake. In response to an acute salt load, KO mice had delayed urinary Na(+) excretion versus controls; this delay was completely abolished by furosemide, partially reduced by hydrochlorothiazide, but not affected by amiloride. After 4 hours of an acute salt load, phosphorylated and total NCC were elevated in KO versus control mice. Acute salt loading did not alter total NKCC2 or SPAK/OSR1 in KO versus control mice but increased the percent phosphorylation of NKCC2 (at T(96/101) and S(126)) and SPAK/OSR1 in KO versus control mice. CONCLUSIONS: These findings indicate that nephron NOS3 is involved in blood pressure regulation and urinary Na(+) excretion during high salt intake. Nephron NOS3 appears to regulate NKCC2 and NCC primarily during acute salt loading. These effects of NOS3 may involve SPAK/OSR1 as well as other pathways. John Wiley and Sons Inc. 2018-07-11 /pmc/articles/PMC6064857/ /pubmed/29997131 http://dx.doi.org/10.1161/JAHA.118.009236 Text en © 2018 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Research
Gao, Yang
Stuart, Deborah
Takahishi, Takamune
Kohan, Donald E.
Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title_full Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title_fullStr Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title_full_unstemmed Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title_short Nephron‐Specific Disruption of Nitric Oxide Synthase 3 Causes Hypertension and Impaired Salt Excretion
title_sort nephron‐specific disruption of nitric oxide synthase 3 causes hypertension and impaired salt excretion
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6064857/
https://www.ncbi.nlm.nih.gov/pubmed/29997131
http://dx.doi.org/10.1161/JAHA.118.009236
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