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Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice

BACKGROUND: Oxidative stress and inflammation are two critical factors that drive the formation of plaques in atherosclerosis. Nrf2 is a redox-sensitive transcription factor that upregulates a battery of antioxidative genes and cytoprotective enzymes that constitute the cellular response to oxidativ...

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Autores principales: Sussan, Thomas E., Jun, Jonathan, Thimmulappa, Rajesh, Bedja, Djahida, Antero, Maria, Gabrielson, Kathleen L., Polotsky, Vsevolod Y., Biswal, Shyam
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582492/
https://www.ncbi.nlm.nih.gov/pubmed/19023427
http://dx.doi.org/10.1371/journal.pone.0003791
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author Sussan, Thomas E.
Jun, Jonathan
Thimmulappa, Rajesh
Bedja, Djahida
Antero, Maria
Gabrielson, Kathleen L.
Polotsky, Vsevolod Y.
Biswal, Shyam
author_facet Sussan, Thomas E.
Jun, Jonathan
Thimmulappa, Rajesh
Bedja, Djahida
Antero, Maria
Gabrielson, Kathleen L.
Polotsky, Vsevolod Y.
Biswal, Shyam
author_sort Sussan, Thomas E.
collection PubMed
description BACKGROUND: Oxidative stress and inflammation are two critical factors that drive the formation of plaques in atherosclerosis. Nrf2 is a redox-sensitive transcription factor that upregulates a battery of antioxidative genes and cytoprotective enzymes that constitute the cellular response to oxidative stress. Our previous studies have shown that disruption of Nrf2 in mice (Nrf2 (−/−)) causes increased susceptibility to pulmonary emphysema, asthma and sepsis due to increased oxidative stress and inflammation. Here we have tested the hypothesis that disruption of Nrf2 in mice causes increased atherosclerosis. PRINCIPAL FINDINGS: To investigate the role of Nrf2 in the development of atherosclerosis, we crossed Nrf2 (−/−) mice with apoliporotein E-deficient (ApoE (−/−)) mice. ApoE (−/−) and ApoE (−/−) Nrf2 (−/−) mice were fed an atherogenic diet for 20 weeks, and plaque area was assessed in the aortas. Surprisingly, ApoE (−/−) Nrf2 (−/−) mice exhibited significantly smaller plaque area than ApoE (−/−) controls (11.5% vs 29.5%). This decrease in plaque area observed in ApoE (−/−) Nrf2 (−/−) mice was associated with a significant decrease in uptake of modified low density lipoproteins (AcLDL) by isolated macrophages from ApoE (−/−) Nrf2 (−/−) mice. Furthermore, atherosclerotic plaques and isolated macrophages from ApoE (−/−) Nrf2 (−/−) mice exhibited decreased expression of the scavenger receptor CD36. CONCLUSIONS: Nrf2 is pro-atherogenic in mice, despite its antioxidative function. The net pro-atherogenic effect of Nrf2 may be mediated via positive regulation of CD36. Our data demonstrates that the potential effects of Nrf2-targeted therapies on cardiovascular disease need to be investigated.
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spelling pubmed-25824922008-11-21 Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice Sussan, Thomas E. Jun, Jonathan Thimmulappa, Rajesh Bedja, Djahida Antero, Maria Gabrielson, Kathleen L. Polotsky, Vsevolod Y. Biswal, Shyam PLoS One Research Article BACKGROUND: Oxidative stress and inflammation are two critical factors that drive the formation of plaques in atherosclerosis. Nrf2 is a redox-sensitive transcription factor that upregulates a battery of antioxidative genes and cytoprotective enzymes that constitute the cellular response to oxidative stress. Our previous studies have shown that disruption of Nrf2 in mice (Nrf2 (−/−)) causes increased susceptibility to pulmonary emphysema, asthma and sepsis due to increased oxidative stress and inflammation. Here we have tested the hypothesis that disruption of Nrf2 in mice causes increased atherosclerosis. PRINCIPAL FINDINGS: To investigate the role of Nrf2 in the development of atherosclerosis, we crossed Nrf2 (−/−) mice with apoliporotein E-deficient (ApoE (−/−)) mice. ApoE (−/−) and ApoE (−/−) Nrf2 (−/−) mice were fed an atherogenic diet for 20 weeks, and plaque area was assessed in the aortas. Surprisingly, ApoE (−/−) Nrf2 (−/−) mice exhibited significantly smaller plaque area than ApoE (−/−) controls (11.5% vs 29.5%). This decrease in plaque area observed in ApoE (−/−) Nrf2 (−/−) mice was associated with a significant decrease in uptake of modified low density lipoproteins (AcLDL) by isolated macrophages from ApoE (−/−) Nrf2 (−/−) mice. Furthermore, atherosclerotic plaques and isolated macrophages from ApoE (−/−) Nrf2 (−/−) mice exhibited decreased expression of the scavenger receptor CD36. CONCLUSIONS: Nrf2 is pro-atherogenic in mice, despite its antioxidative function. The net pro-atherogenic effect of Nrf2 may be mediated via positive regulation of CD36. Our data demonstrates that the potential effects of Nrf2-targeted therapies on cardiovascular disease need to be investigated. Public Library of Science 2008-11-21 /pmc/articles/PMC2582492/ /pubmed/19023427 http://dx.doi.org/10.1371/journal.pone.0003791 Text en Sussan 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
Sussan, Thomas E.
Jun, Jonathan
Thimmulappa, Rajesh
Bedja, Djahida
Antero, Maria
Gabrielson, Kathleen L.
Polotsky, Vsevolod Y.
Biswal, Shyam
Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title_full Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title_fullStr Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title_full_unstemmed Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title_short Disruption of Nrf2, a Key Inducer of Antioxidant Defenses, Attenuates ApoE-Mediated Atherosclerosis in Mice
title_sort disruption of nrf2, a key inducer of antioxidant defenses, attenuates apoe-mediated atherosclerosis in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582492/
https://www.ncbi.nlm.nih.gov/pubmed/19023427
http://dx.doi.org/10.1371/journal.pone.0003791
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