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PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs

Myocardial ischemia/reperfusion (I/R) injury is a major complication of reperfusion therapy in myocardial infarction. Ischemic myocardium produces a variety of peptides. We recently identified PDRPS7 as a novel peptide in cardiomyocytes that can be induced by hypoxia. However, the role of PDRPS7 is...

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Autores principales: Duan, Yulian, Cheng, Siyuan, Jia, Liang, Zhang, Zhao, Chen, Leilei
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/PMC7137793/
https://www.ncbi.nlm.nih.gov/pubmed/32108998
http://dx.doi.org/10.1002/2211-5463.12822
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author Duan, Yulian
Cheng, Siyuan
Jia, Liang
Zhang, Zhao
Chen, Leilei
author_facet Duan, Yulian
Cheng, Siyuan
Jia, Liang
Zhang, Zhao
Chen, Leilei
author_sort Duan, Yulian
collection PubMed
description Myocardial ischemia/reperfusion (I/R) injury is a major complication of reperfusion therapy in myocardial infarction. Ischemic myocardium produces a variety of peptides. We recently identified PDRPS7 as a novel peptide in cardiomyocytes that can be induced by hypoxia. However, the role of PDRPS7 is unknown. Here, we investigated the effects of PDRPS7 on hypoxia/reoxygenation (H/R)‐induced injury in rat cardiomyoblast H9c2 cells and NRCMs. We found that PDRPS7 improved cell survival and attenuated lactate dehydrogenase leakage following H/R in H9c2 cells and NRCMs. PDRPS7 also alleviated H/R‐induced pulsation reduction in NRCMs. Moreover, H/R‐induced cell apoptosis was decreased in the presence of PDRPS7. H/R‐induced reactive oxygen species generation was reduced by PDRPS7; in addition, PDRPS7 did not impact H(2)O(2)‐induced cell injury. Signaling analysis demonstrated that H/R increased the phosphorylation levels of JNKs, ERKs, and p38 mitogen‐activated protein kinases. However, PDRPS7 only attenuated H/R‐induced JNK phosphorylation, but not phosphorylation of ERKs and p38. PDRPS7 protected cardiomyocytes from apoptosis by inhibiting JNK phosphorylation and c‐Jun phosphorylation pathways, markedly upregulating anti‐apoptotic Bcl‐2 expression and inhibiting that of pro‐apoptotic Bax and cleaved caspase‐3. Importantly, pharmacological activation of JNKs diminished the protective effect of PDRPS7 in terms of cell survival against H/R stimulation. In summary, our study identified PDRPS7 as a novel cardioprotective peptide against H/R challenge and this action was mediated, at least in part, through inactivation of JNKs.
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spelling pubmed-71377932020-04-08 PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs Duan, Yulian Cheng, Siyuan Jia, Liang Zhang, Zhao Chen, Leilei FEBS Open Bio Research Articles Myocardial ischemia/reperfusion (I/R) injury is a major complication of reperfusion therapy in myocardial infarction. Ischemic myocardium produces a variety of peptides. We recently identified PDRPS7 as a novel peptide in cardiomyocytes that can be induced by hypoxia. However, the role of PDRPS7 is unknown. Here, we investigated the effects of PDRPS7 on hypoxia/reoxygenation (H/R)‐induced injury in rat cardiomyoblast H9c2 cells and NRCMs. We found that PDRPS7 improved cell survival and attenuated lactate dehydrogenase leakage following H/R in H9c2 cells and NRCMs. PDRPS7 also alleviated H/R‐induced pulsation reduction in NRCMs. Moreover, H/R‐induced cell apoptosis was decreased in the presence of PDRPS7. H/R‐induced reactive oxygen species generation was reduced by PDRPS7; in addition, PDRPS7 did not impact H(2)O(2)‐induced cell injury. Signaling analysis demonstrated that H/R increased the phosphorylation levels of JNKs, ERKs, and p38 mitogen‐activated protein kinases. However, PDRPS7 only attenuated H/R‐induced JNK phosphorylation, but not phosphorylation of ERKs and p38. PDRPS7 protected cardiomyocytes from apoptosis by inhibiting JNK phosphorylation and c‐Jun phosphorylation pathways, markedly upregulating anti‐apoptotic Bcl‐2 expression and inhibiting that of pro‐apoptotic Bax and cleaved caspase‐3. Importantly, pharmacological activation of JNKs diminished the protective effect of PDRPS7 in terms of cell survival against H/R stimulation. In summary, our study identified PDRPS7 as a novel cardioprotective peptide against H/R challenge and this action was mediated, at least in part, through inactivation of JNKs. John Wiley and Sons Inc. 2020-03-16 /pmc/articles/PMC7137793/ /pubmed/32108998 http://dx.doi.org/10.1002/2211-5463.12822 Text en © 2020 The Authors. Published by FEBS Press and John Wiley & Sons Ltd. 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 Research Articles
Duan, Yulian
Cheng, Siyuan
Jia, Liang
Zhang, Zhao
Chen, Leilei
PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title_full PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title_fullStr PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title_full_unstemmed PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title_short PDRPS7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of JNKs
title_sort pdrps7 protects cardiac cells from hypoxia/reoxygenation injury through inactivation of jnks
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7137793/
https://www.ncbi.nlm.nih.gov/pubmed/32108998
http://dx.doi.org/10.1002/2211-5463.12822
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