Cargando…

Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway

RATIONALE: We have previously shown increased cardiac stanniocalcin-1 (STC1) in patients with idiopathic dilated cardiomyopathy. STC1 localizes to the inner mitochondrial membrane and transgenic over-expression of STC1 is associated with increased energy utilization. OBJECTIVE: We examined the hypot...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Dajun, Huang, Luping, Wang, Yanlin, Wang, Wei, Wehrens, Xander H.T., Belousova, Tatiana, Abdelrahim, Maen, DiMattia, Gabriel, Sheikh-Hamad, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365029/
https://www.ncbi.nlm.nih.gov/pubmed/22693564
http://dx.doi.org/10.1371/journal.pone.0036994
_version_ 1782234629074321408
author Liu, Dajun
Huang, Luping
Wang, Yanlin
Wang, Wei
Wehrens, Xander H.T.
Belousova, Tatiana
Abdelrahim, Maen
DiMattia, Gabriel
Sheikh-Hamad, David
author_facet Liu, Dajun
Huang, Luping
Wang, Yanlin
Wang, Wei
Wehrens, Xander H.T.
Belousova, Tatiana
Abdelrahim, Maen
DiMattia, Gabriel
Sheikh-Hamad, David
author_sort Liu, Dajun
collection PubMed
description RATIONALE: We have previously shown increased cardiac stanniocalcin-1 (STC1) in patients with idiopathic dilated cardiomyopathy. STC1 localizes to the inner mitochondrial membrane and transgenic over-expression of STC1 is associated with increased energy utilization. OBJECTIVE: We examined the hypothesis that STC1 uncouples mitochondrial oxidative phosphorylation - to suppress superoxide generation and modulate neurohormonal effects on cardiomyocytes. METHODS AND RESULTS: Compared to WT mouse heart, STC1 Tg heart displays: 2-fold higher uncoupling protein 3 (UCP3) levels, but no effect on UCP2 protein; 40% lower ATP levels; but similar activities of respiratory chain complexes I-IV. In cultured adult rat and freshly-isolated mouse cardiomyocytes, rSTC1 induces UCP3, but not UCP2. Treatment of cardiomyocytes with STC1 decreases mitochondrial membrane potential and suppresses baseline and angiotensin II (Ang II)-induced superoxide generation. Furthermore, baseline superoxide generation is higher in freshly-isolated adult UCP3(−/−) mouse cardiomyocytes compared to WT, suggesting an important role for UCP3 in regulating cardiomyocyte ROS under physiologic conditions. Treatment of UCP3(−/−) cardiomyocytes with rSTC1 failed to suppress superoxide generation, suggesting that the effects of STC1 on superoxide generation in cardiomyocytes are UCP3-dependent. CONCLUSION: STC1 activates a novel anti-oxidant pathway in cardiac myocytes through induction of UCP3, and may play an important role in suppressing ROS in the heart under normal physiologic conditions and ameliorate the deleterious effects of Ang II-mediated cardiac injury. Importantly, our data point to a critical role for the mitochondria in regulating ROS generation in response to Ang II.
format Online
Article
Text
id pubmed-3365029
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33650292012-06-12 Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway Liu, Dajun Huang, Luping Wang, Yanlin Wang, Wei Wehrens, Xander H.T. Belousova, Tatiana Abdelrahim, Maen DiMattia, Gabriel Sheikh-Hamad, David PLoS One Research Article RATIONALE: We have previously shown increased cardiac stanniocalcin-1 (STC1) in patients with idiopathic dilated cardiomyopathy. STC1 localizes to the inner mitochondrial membrane and transgenic over-expression of STC1 is associated with increased energy utilization. OBJECTIVE: We examined the hypothesis that STC1 uncouples mitochondrial oxidative phosphorylation - to suppress superoxide generation and modulate neurohormonal effects on cardiomyocytes. METHODS AND RESULTS: Compared to WT mouse heart, STC1 Tg heart displays: 2-fold higher uncoupling protein 3 (UCP3) levels, but no effect on UCP2 protein; 40% lower ATP levels; but similar activities of respiratory chain complexes I-IV. In cultured adult rat and freshly-isolated mouse cardiomyocytes, rSTC1 induces UCP3, but not UCP2. Treatment of cardiomyocytes with STC1 decreases mitochondrial membrane potential and suppresses baseline and angiotensin II (Ang II)-induced superoxide generation. Furthermore, baseline superoxide generation is higher in freshly-isolated adult UCP3(−/−) mouse cardiomyocytes compared to WT, suggesting an important role for UCP3 in regulating cardiomyocyte ROS under physiologic conditions. Treatment of UCP3(−/−) cardiomyocytes with rSTC1 failed to suppress superoxide generation, suggesting that the effects of STC1 on superoxide generation in cardiomyocytes are UCP3-dependent. CONCLUSION: STC1 activates a novel anti-oxidant pathway in cardiac myocytes through induction of UCP3, and may play an important role in suppressing ROS in the heart under normal physiologic conditions and ameliorate the deleterious effects of Ang II-mediated cardiac injury. Importantly, our data point to a critical role for the mitochondria in regulating ROS generation in response to Ang II. Public Library of Science 2012-05-31 /pmc/articles/PMC3365029/ /pubmed/22693564 http://dx.doi.org/10.1371/journal.pone.0036994 Text en Liu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Dajun
Huang, Luping
Wang, Yanlin
Wang, Wei
Wehrens, Xander H.T.
Belousova, Tatiana
Abdelrahim, Maen
DiMattia, Gabriel
Sheikh-Hamad, David
Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title_full Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title_fullStr Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title_full_unstemmed Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title_short Human Stanniocalcin-1 Suppresses Angiotensin II-Induced Superoxide Generation in Cardiomyocytes through UCP3-Mediated Anti-Oxidant Pathway
title_sort human stanniocalcin-1 suppresses angiotensin ii-induced superoxide generation in cardiomyocytes through ucp3-mediated anti-oxidant pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3365029/
https://www.ncbi.nlm.nih.gov/pubmed/22693564
http://dx.doi.org/10.1371/journal.pone.0036994
work_keys_str_mv AT liudajun humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT huangluping humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT wangyanlin humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT wangwei humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT wehrensxanderht humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT belousovatatiana humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT abdelrahimmaen humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT dimattiagabriel humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway
AT sheikhhamaddavid humanstanniocalcin1suppressesangiotensiniiinducedsuperoxidegenerationincardiomyocytesthroughucp3mediatedantioxidantpathway