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ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney

Angiotensin‐converting enzyme 2 (ACE2) is highly expressed in the kidney and hydrolyzes angiotensin II (Ang II) to Ang(1–7). Since Ang II is a strong activator of oxidative stress, we reasoned that ACE2 could be involved in the regulation of renal oxidative stress by governing the levels of Ang II....

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Autores principales: Wysocki, Jan, Ortiz‐Melo, David I., Mattocks, Natalie K., Xu, Katherine, Prescott, Jessica, Evora, Karla, Ye, Minghao, Sparks, Matthew A., Haque, Syed K., Batlle, Daniel, Gurley, Susan B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002244/
https://www.ncbi.nlm.nih.gov/pubmed/24760518
http://dx.doi.org/10.1002/phy2.264
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author Wysocki, Jan
Ortiz‐Melo, David I.
Mattocks, Natalie K.
Xu, Katherine
Prescott, Jessica
Evora, Karla
Ye, Minghao
Sparks, Matthew A.
Haque, Syed K.
Batlle, Daniel
Gurley, Susan B.
author_facet Wysocki, Jan
Ortiz‐Melo, David I.
Mattocks, Natalie K.
Xu, Katherine
Prescott, Jessica
Evora, Karla
Ye, Minghao
Sparks, Matthew A.
Haque, Syed K.
Batlle, Daniel
Gurley, Susan B.
author_sort Wysocki, Jan
collection PubMed
description Angiotensin‐converting enzyme 2 (ACE2) is highly expressed in the kidney and hydrolyzes angiotensin II (Ang II) to Ang(1–7). Since Ang II is a strong activator of oxidative stress, we reasoned that ACE2 could be involved in the regulation of renal oxidative stress by governing the levels of Ang II. We, therefore, assessed levels of oxidative stress in kidney cortex of ACE2 knockout and wild‐type littermate mice under baseline conditions. We found multiple markers of increased oxidative stress in ACE2KO mice. NADPH oxidase activity was increased in kidney cortex from ACE2KO mice as compared to WT (227 ± 24% vs.100 ± 19%, P < 0.001). However, kidney catalase and superoxide dismutase activities were not different between groups. Exogenous Ang II was degraded less efficiently by kidneys from ACE2KO mice than WT mice, and administration of an AT1R blocker (losartan 30 mg/kg/day) resulted in normalization of NADPH oxidase activity in the ACE2KO. These findings suggest that an AT1R‐dependent mechanism contributes to increased ROS observed in the ACE2KO. This study demonstrates that genetic deficiency of ACE2 activity in mice fosters oxidative stress in the kidney in the absence of overt hypertension and is associated with reduced kidney capacity to hydrolyze Ang II. ACE2KO mice serve as a novel in vivo model to examine the role of overactivity of NADPH oxidase in kidney function.
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spelling pubmed-40022442014-05-13 ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney Wysocki, Jan Ortiz‐Melo, David I. Mattocks, Natalie K. Xu, Katherine Prescott, Jessica Evora, Karla Ye, Minghao Sparks, Matthew A. Haque, Syed K. Batlle, Daniel Gurley, Susan B. Physiol Rep Original Research Angiotensin‐converting enzyme 2 (ACE2) is highly expressed in the kidney and hydrolyzes angiotensin II (Ang II) to Ang(1–7). Since Ang II is a strong activator of oxidative stress, we reasoned that ACE2 could be involved in the regulation of renal oxidative stress by governing the levels of Ang II. We, therefore, assessed levels of oxidative stress in kidney cortex of ACE2 knockout and wild‐type littermate mice under baseline conditions. We found multiple markers of increased oxidative stress in ACE2KO mice. NADPH oxidase activity was increased in kidney cortex from ACE2KO mice as compared to WT (227 ± 24% vs.100 ± 19%, P < 0.001). However, kidney catalase and superoxide dismutase activities were not different between groups. Exogenous Ang II was degraded less efficiently by kidneys from ACE2KO mice than WT mice, and administration of an AT1R blocker (losartan 30 mg/kg/day) resulted in normalization of NADPH oxidase activity in the ACE2KO. These findings suggest that an AT1R‐dependent mechanism contributes to increased ROS observed in the ACE2KO. This study demonstrates that genetic deficiency of ACE2 activity in mice fosters oxidative stress in the kidney in the absence of overt hypertension and is associated with reduced kidney capacity to hydrolyze Ang II. ACE2KO mice serve as a novel in vivo model to examine the role of overactivity of NADPH oxidase in kidney function. John Wiley and Sons Inc. 2014-03-24 /pmc/articles/PMC4002244/ /pubmed/24760518 http://dx.doi.org/10.1002/phy2.264 Text en © 2014 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Wysocki, Jan
Ortiz‐Melo, David I.
Mattocks, Natalie K.
Xu, Katherine
Prescott, Jessica
Evora, Karla
Ye, Minghao
Sparks, Matthew A.
Haque, Syed K.
Batlle, Daniel
Gurley, Susan B.
ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title_full ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title_fullStr ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title_full_unstemmed ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title_short ACE2 deficiency increases NADPH‐mediated oxidative stress in the kidney
title_sort ace2 deficiency increases nadph‐mediated oxidative stress in the kidney
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4002244/
https://www.ncbi.nlm.nih.gov/pubmed/24760518
http://dx.doi.org/10.1002/phy2.264
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