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Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice

Peroxynitrite is an endothelium-independent vasodilator that induces relaxation via membrane hyperpolarization. The activation of IP3 receptors triggers the opening of potassium channels and hyperpolarization. Previously we found that relaxation to peroxynitrite was maintained during the development...

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Autores principales: Ewart, Marie-Ann, Ugusman, Azizah, Vishwanath, Anisha, Almabrouk, Tarek A.M., Alganga, Husam, Katwan, Omar J., Hubanova, Pavlina, Currie, Susan, Kennedy, Simon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: S. Karger AG 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5804831/
https://www.ncbi.nlm.nih.gov/pubmed/28365690
http://dx.doi.org/10.1159/000461581
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author Ewart, Marie-Ann
Ugusman, Azizah
Vishwanath, Anisha
Almabrouk, Tarek A.M.
Alganga, Husam
Katwan, Omar J.
Hubanova, Pavlina
Currie, Susan
Kennedy, Simon
author_facet Ewart, Marie-Ann
Ugusman, Azizah
Vishwanath, Anisha
Almabrouk, Tarek A.M.
Alganga, Husam
Katwan, Omar J.
Hubanova, Pavlina
Currie, Susan
Kennedy, Simon
author_sort Ewart, Marie-Ann
collection PubMed
description Peroxynitrite is an endothelium-independent vasodilator that induces relaxation via membrane hyperpolarization. The activation of IP3 receptors triggers the opening of potassium channels and hyperpolarization. Previously we found that relaxation to peroxynitrite was maintained during the development of atherosclerosis due to changes in the expression of calcium-regulatory proteins. In this study we investigated: (1) the mechanism of peroxynitrite-induced relaxation in the mouse aorta, (2) the effect of atherosclerosis on relaxation to peroxynitrite and other vasodilators, and (3) the effect of atherosclerosis on the expression and function of the IP3 receptor. Aortic function was studied using wire myography, and atherosclerosis was induced by fat-feeding ApoE(−/−) mice. The expression of IP3 receptors was studied using Western blotting and immunohistochemistry. Relaxation to peroxynitrite was attenuated by the IP3 antagonists 2-APB and xestospongin C and also the K(v) channel blocker 4-aminopyridine (4-AP). Atherosclerosis attenuated vasodilation to cromakalim and the AMPK activator A769662 but not peroxynitrite. Relaxation was attenuated to a greater extent by 2-APB in atherosclerotic aortae despite the reduced expression of IP3 receptors. 4-AP was less effective in ApoE(−/−) mice fat-fed for 4 months. Peroxynitrite relaxation involves an IP3-induced calcium release and K(V) channel activation. This mechanism becomes less important as atherosclerosis develops, and relaxation to peroxynitrite may be maintained by increased calcium extrusion.
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spelling pubmed-58048312018-02-28 Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice Ewart, Marie-Ann Ugusman, Azizah Vishwanath, Anisha Almabrouk, Tarek A.M. Alganga, Husam Katwan, Omar J. Hubanova, Pavlina Currie, Susan Kennedy, Simon J Vasc Res Research Paper Peroxynitrite is an endothelium-independent vasodilator that induces relaxation via membrane hyperpolarization. The activation of IP3 receptors triggers the opening of potassium channels and hyperpolarization. Previously we found that relaxation to peroxynitrite was maintained during the development of atherosclerosis due to changes in the expression of calcium-regulatory proteins. In this study we investigated: (1) the mechanism of peroxynitrite-induced relaxation in the mouse aorta, (2) the effect of atherosclerosis on relaxation to peroxynitrite and other vasodilators, and (3) the effect of atherosclerosis on the expression and function of the IP3 receptor. Aortic function was studied using wire myography, and atherosclerosis was induced by fat-feeding ApoE(−/−) mice. The expression of IP3 receptors was studied using Western blotting and immunohistochemistry. Relaxation to peroxynitrite was attenuated by the IP3 antagonists 2-APB and xestospongin C and also the K(v) channel blocker 4-aminopyridine (4-AP). Atherosclerosis attenuated vasodilation to cromakalim and the AMPK activator A769662 but not peroxynitrite. Relaxation was attenuated to a greater extent by 2-APB in atherosclerotic aortae despite the reduced expression of IP3 receptors. 4-AP was less effective in ApoE(−/−) mice fat-fed for 4 months. Peroxynitrite relaxation involves an IP3-induced calcium release and K(V) channel activation. This mechanism becomes less important as atherosclerosis develops, and relaxation to peroxynitrite may be maintained by increased calcium extrusion. S. Karger AG 2017-05 2017-04-01 /pmc/articles/PMC5804831/ /pubmed/28365690 http://dx.doi.org/10.1159/000461581 Text en Copyright © 2017 by S. Karger AG, Basel http://creativecommons.org/licenses/by/4.0/ This article is licensed under the Creative Commons Attribution 4.0 International License (CC BY) (http://www.karger.com/Services/OpenAccessLicense). Usage, derivative works and distribution are permitted provided that proper credit is given to the author and the original publisher.
spellingShingle Research Paper
Ewart, Marie-Ann
Ugusman, Azizah
Vishwanath, Anisha
Almabrouk, Tarek A.M.
Alganga, Husam
Katwan, Omar J.
Hubanova, Pavlina
Currie, Susan
Kennedy, Simon
Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title_full Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title_fullStr Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title_full_unstemmed Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title_short Changes in IP3 Receptor Expression and Function in Aortic Smooth Muscle of Atherosclerotic Mice
title_sort changes in ip3 receptor expression and function in aortic smooth muscle of atherosclerotic mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5804831/
https://www.ncbi.nlm.nih.gov/pubmed/28365690
http://dx.doi.org/10.1159/000461581
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