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A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice

A Ca(2+)‐activated Cl(−) channel protein, ANO1, is expressed in vascular smooth muscle cells where Cl(−) current is thought to potentiate contraction by contributing to membrane depolarization. However, there is an inconsistency between previous knockout and knockdown studies on ANO1’s role in small...

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Autores principales: Matchkov, Vladimir V., Black Joergensen, Henrik, Kamaev, Dmitrii, Hoegh Jensen, Andreas, Beck, Hans Christian, Skryabin, Boris V., Aalkjaer, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695021/
https://www.ncbi.nlm.nih.gov/pubmed/33245843
http://dx.doi.org/10.14814/phy2.14645
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author Matchkov, Vladimir V.
Black Joergensen, Henrik
Kamaev, Dmitrii
Hoegh Jensen, Andreas
Beck, Hans Christian
Skryabin, Boris V.
Aalkjaer, Christian
author_facet Matchkov, Vladimir V.
Black Joergensen, Henrik
Kamaev, Dmitrii
Hoegh Jensen, Andreas
Beck, Hans Christian
Skryabin, Boris V.
Aalkjaer, Christian
author_sort Matchkov, Vladimir V.
collection PubMed
description A Ca(2+)‐activated Cl(−) channel protein, ANO1, is expressed in vascular smooth muscle cells where Cl(−) current is thought to potentiate contraction by contributing to membrane depolarization. However, there is an inconsistency between previous knockout and knockdown studies on ANO1’s role in small arteries. In this study, we assessed cardiovascular function of heterozygous mice with global deletion of exon 7 in the ANO1 gene. We found decreased expression of ANO1 in aorta, saphenous and tail arteries from heterozygous ANO1 knockout mice in comparison with wild type. Accordingly, ANO1 knockdown reduced the Ca(2+)‐activated Cl(−) current in smooth muscle cells. Consistent with conventional hypothesis, the contractility of aorta from ANO1 heterozygous mice was reduced. Surprisingly, we found an enhanced contractility of tail and saphenous arteries from ANO1 heterozygous mice when stimulated with noradrenaline, vasopressin, and K(+)‐induced depolarization. This difference was endothelium‐independent. The increased contractility of ANO1 downregulated small arteries was due to increased Ca(2+) influx. The expression of L‐type Ca(2+) channels was not affected but expression of the plasma membrane Ca(2+) ATPase 1 and the Piezo1 channel was increased. Expressional analysis of tail arteries further suggested changes of ANO1 knockdown smooth muscle cells toward a pro‐contractile phenotype. We did not find any difference between genotypes in blood pressure, heart rate, pressor response, and vasorelaxation in vivo. Our findings in tail and saphenous arteries contrast with the conventional hypothesis and suggest additional roles for ANO1 as a multifunctional protein in the vascular wall that regulates Ca(2+) homeostasis and smooth muscle cell phenotype.
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spelling pubmed-76950212020-12-10 A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice Matchkov, Vladimir V. Black Joergensen, Henrik Kamaev, Dmitrii Hoegh Jensen, Andreas Beck, Hans Christian Skryabin, Boris V. Aalkjaer, Christian Physiol Rep Original Articles A Ca(2+)‐activated Cl(−) channel protein, ANO1, is expressed in vascular smooth muscle cells where Cl(−) current is thought to potentiate contraction by contributing to membrane depolarization. However, there is an inconsistency between previous knockout and knockdown studies on ANO1’s role in small arteries. In this study, we assessed cardiovascular function of heterozygous mice with global deletion of exon 7 in the ANO1 gene. We found decreased expression of ANO1 in aorta, saphenous and tail arteries from heterozygous ANO1 knockout mice in comparison with wild type. Accordingly, ANO1 knockdown reduced the Ca(2+)‐activated Cl(−) current in smooth muscle cells. Consistent with conventional hypothesis, the contractility of aorta from ANO1 heterozygous mice was reduced. Surprisingly, we found an enhanced contractility of tail and saphenous arteries from ANO1 heterozygous mice when stimulated with noradrenaline, vasopressin, and K(+)‐induced depolarization. This difference was endothelium‐independent. The increased contractility of ANO1 downregulated small arteries was due to increased Ca(2+) influx. The expression of L‐type Ca(2+) channels was not affected but expression of the plasma membrane Ca(2+) ATPase 1 and the Piezo1 channel was increased. Expressional analysis of tail arteries further suggested changes of ANO1 knockdown smooth muscle cells toward a pro‐contractile phenotype. We did not find any difference between genotypes in blood pressure, heart rate, pressor response, and vasorelaxation in vivo. Our findings in tail and saphenous arteries contrast with the conventional hypothesis and suggest additional roles for ANO1 as a multifunctional protein in the vascular wall that regulates Ca(2+) homeostasis and smooth muscle cell phenotype. John Wiley and Sons Inc. 2020-11-27 /pmc/articles/PMC7695021/ /pubmed/33245843 http://dx.doi.org/10.14814/phy2.14645 Text en © 2020 The Authors. Physiological Reports published by Wiley Periodicals LLC on behalf of The Physiological Society and the American Physiological Society This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Matchkov, Vladimir V.
Black Joergensen, Henrik
Kamaev, Dmitrii
Hoegh Jensen, Andreas
Beck, Hans Christian
Skryabin, Boris V.
Aalkjaer, Christian
A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title_full A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title_fullStr A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title_full_unstemmed A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title_short A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice
title_sort paradoxical increase of force development in saphenous and tail arteries from heterozygous ano1 knockout mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695021/
https://www.ncbi.nlm.nih.gov/pubmed/33245843
http://dx.doi.org/10.14814/phy2.14645
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