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Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux

AIMS: SUMOylation is a post-translational modification that plays a crucial role in the cellular stress response. We aimed to demonstrate whether and how the SUMO E2 conjugation enzyme Ubc9 affects acute myocardial ischemic (MI) injury. METHODS AND RESULTS: Adenovirus expressing Ubc9 was administrat...

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Autores principales: Xiao, Qing, Chen, Xiu-Hui, Jiang, Ru-Chao, Chen, Sheng-Ying, Chen, Kai-Feng, Zhu, Xiang, Zhang, Xiao-ling, Huang, Jun-jun, Qin, Yuan, Zhang, Gui-Ping, Yi, Quan, Luo, Jian-dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7522513/
https://www.ncbi.nlm.nih.gov/pubmed/33041800
http://dx.doi.org/10.3389/fphar.2020.561306
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author Xiao, Qing
Chen, Xiu-Hui
Jiang, Ru-Chao
Chen, Sheng-Ying
Chen, Kai-Feng
Zhu, Xiang
Zhang, Xiao-ling
Huang, Jun-jun
Qin, Yuan
Zhang, Gui-Ping
Yi, Quan
Luo, Jian-dong
author_facet Xiao, Qing
Chen, Xiu-Hui
Jiang, Ru-Chao
Chen, Sheng-Ying
Chen, Kai-Feng
Zhu, Xiang
Zhang, Xiao-ling
Huang, Jun-jun
Qin, Yuan
Zhang, Gui-Ping
Yi, Quan
Luo, Jian-dong
author_sort Xiao, Qing
collection PubMed
description AIMS: SUMOylation is a post-translational modification that plays a crucial role in the cellular stress response. We aimed to demonstrate whether and how the SUMO E2 conjugation enzyme Ubc9 affects acute myocardial ischemic (MI) injury. METHODS AND RESULTS: Adenovirus expressing Ubc9 was administrated by multipoint injection in the border zone of heart immediately after MI in C57BL/6 mice. Neonatal rat cardiomyocytes (NRCMs) were also infected, followed by oxygen and glucose deprivation (OGD). In vivo, Ubc9 adenovirus-injected mice showed decreased cardiomyocyte apoptosis, reduced myocardial fibrosis, and improved cardiac function post-MI. In vitro, overexpression of Ubc9 decreased cardiomyocyte apoptosis, whereas silence of Ubc9 showed the opposite results during OGD. We next found that Ubc9 significantly decreased the accumulation of autophagy marker p62/SQSTM, while the LC3 II level hardly changed. When in the presence of bafilomycin A1 (BAF), the Ubc9 adenovirus plus OGD group presented a higher level of LC3 II and GFP-LC3 puncta than the OGD group. Moreover, the Ubc9 adenovirus group displayed increased numbers of yellow plus red puncta and a rising ratio of red to yellow puncta on the mRFP-GFP-LC3 fluorescence assay, indicating that Ubc9 induces an acceleration of autophagic flux from activation to degradation. Mechanistically, Ubc9 upregulated SUMOylation of the core proteins Vps34 and Beclin1 in the class III phosphatidylinositol 3-kinase (PI3K-III) complexes and boosted the protein assembly of PI3K-III complex I and II under OGD. Moreover, the colocalization of Vps34 with autophagosome marker LC3 or lysosome marker Lamp1 was augmented after Ubc9 overexpression, indicating a positive effect of Ubc9-boosted protein assembly of the PI3K-III complexes on autophagic flux enhancement. CONCLUSIONS: We uncovered a novel role of Ubc9 in protecting cardiomyocytes from ischemic stress via Ubc9-induced SUMOylation, leading to increased PI3K-III complex assembly and autophagy-positioning. These findings may indicate a potential therapeutic target, Ubc9, for treatment of myocardial ischemia.
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spelling pubmed-75225132020-10-09 Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux Xiao, Qing Chen, Xiu-Hui Jiang, Ru-Chao Chen, Sheng-Ying Chen, Kai-Feng Zhu, Xiang Zhang, Xiao-ling Huang, Jun-jun Qin, Yuan Zhang, Gui-Ping Yi, Quan Luo, Jian-dong Front Pharmacol Pharmacology AIMS: SUMOylation is a post-translational modification that plays a crucial role in the cellular stress response. We aimed to demonstrate whether and how the SUMO E2 conjugation enzyme Ubc9 affects acute myocardial ischemic (MI) injury. METHODS AND RESULTS: Adenovirus expressing Ubc9 was administrated by multipoint injection in the border zone of heart immediately after MI in C57BL/6 mice. Neonatal rat cardiomyocytes (NRCMs) were also infected, followed by oxygen and glucose deprivation (OGD). In vivo, Ubc9 adenovirus-injected mice showed decreased cardiomyocyte apoptosis, reduced myocardial fibrosis, and improved cardiac function post-MI. In vitro, overexpression of Ubc9 decreased cardiomyocyte apoptosis, whereas silence of Ubc9 showed the opposite results during OGD. We next found that Ubc9 significantly decreased the accumulation of autophagy marker p62/SQSTM, while the LC3 II level hardly changed. When in the presence of bafilomycin A1 (BAF), the Ubc9 adenovirus plus OGD group presented a higher level of LC3 II and GFP-LC3 puncta than the OGD group. Moreover, the Ubc9 adenovirus group displayed increased numbers of yellow plus red puncta and a rising ratio of red to yellow puncta on the mRFP-GFP-LC3 fluorescence assay, indicating that Ubc9 induces an acceleration of autophagic flux from activation to degradation. Mechanistically, Ubc9 upregulated SUMOylation of the core proteins Vps34 and Beclin1 in the class III phosphatidylinositol 3-kinase (PI3K-III) complexes and boosted the protein assembly of PI3K-III complex I and II under OGD. Moreover, the colocalization of Vps34 with autophagosome marker LC3 or lysosome marker Lamp1 was augmented after Ubc9 overexpression, indicating a positive effect of Ubc9-boosted protein assembly of the PI3K-III complexes on autophagic flux enhancement. CONCLUSIONS: We uncovered a novel role of Ubc9 in protecting cardiomyocytes from ischemic stress via Ubc9-induced SUMOylation, leading to increased PI3K-III complex assembly and autophagy-positioning. These findings may indicate a potential therapeutic target, Ubc9, for treatment of myocardial ischemia. Frontiers Media S.A. 2020-09-15 /pmc/articles/PMC7522513/ /pubmed/33041800 http://dx.doi.org/10.3389/fphar.2020.561306 Text en Copyright © 2020 Xiao, Chen, Jiang, Chen, Chen, Zhu, Zhang, Huang, Qin, Zhang, Yi and Luo http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Xiao, Qing
Chen, Xiu-Hui
Jiang, Ru-Chao
Chen, Sheng-Ying
Chen, Kai-Feng
Zhu, Xiang
Zhang, Xiao-ling
Huang, Jun-jun
Qin, Yuan
Zhang, Gui-Ping
Yi, Quan
Luo, Jian-dong
Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title_full Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title_fullStr Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title_full_unstemmed Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title_short Ubc9 Attenuates Myocardial Ischemic Injury Through Accelerating Autophagic Flux
title_sort ubc9 attenuates myocardial ischemic injury through accelerating autophagic flux
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7522513/
https://www.ncbi.nlm.nih.gov/pubmed/33041800
http://dx.doi.org/10.3389/fphar.2020.561306
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