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MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress

BACKGROUND: To investigate if microRNAs (miRNAs) play a role in regulating h-ERG trafficking in the setting of chronic oxidative stress as a common deleterious factor for many cardiac disorders. METHODS: We treated neonatal rat ventricular myocytes and HEK293 cells with stable expression of h-ERG wi...

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Autores principales: Wang, Qi, Hu, Weina, Lei, Mingming, Wang, Yong, Yan, Bing, Liu, Jun, Zhang, Ren, Jin, Yuanzhe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875566/
https://www.ncbi.nlm.nih.gov/pubmed/24386440
http://dx.doi.org/10.1371/journal.pone.0084984
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author Wang, Qi
Hu, Weina
Lei, Mingming
Wang, Yong
Yan, Bing
Liu, Jun
Zhang, Ren
Jin, Yuanzhe
author_facet Wang, Qi
Hu, Weina
Lei, Mingming
Wang, Yong
Yan, Bing
Liu, Jun
Zhang, Ren
Jin, Yuanzhe
author_sort Wang, Qi
collection PubMed
description BACKGROUND: To investigate if microRNAs (miRNAs) play a role in regulating h-ERG trafficking in the setting of chronic oxidative stress as a common deleterious factor for many cardiac disorders. METHODS: We treated neonatal rat ventricular myocytes and HEK293 cells with stable expression of h-ERG with H(2)O(2) for 12 h and 48 h. Expression of miR-17-5p seed miRNAs was quantified by real-time RT-PCR. Protein levels of chaperones and h-ERG trafficking were measured by Western blot analysis. Luciferase reporter gene assay was used to study miRNA and target interactions. Whole-cell patch-clamp techniques were employed to record h-ERG K(+) current. RESULTS: H-ERG trafficking was impaired by H(2)O(2) after 48 h treatment, accompanied by reciprocal changes of expression between miR-17-5p seed miRNAs and several chaperones (Hsp70, Hsc70, CANX, and Golga2), with the former upregulated and the latter downregulated. We established these chaperones as targets for miR-17-5p. Application miR-17-5p inhibitor rescued H(2)O(2)-induced impairment of h-ERG trafficking. Upregulation of endogenous by H(2)O(2) or forced miR-17-5p expression either reduced h-ERG current. Sequestration of AP1 by its decoy molecule eliminated the upregulation of miR-17-5p, and ameliorated impairment of h-ERG trafficking. CONCLUSIONS: Collectively, deregulation of the miR-17-5p seed family miRNAs can cause severe impairment of h-ERG trafficking through targeting multiple ER stress-related chaperones, and activation of AP1 likely accounts for the deleterious upregulation of these miRNAs, in the setting of prolonged duration of oxidative stress. These findings revealed the role of miRNAs in h-ERG trafficking, which may contribute to the cardiac electrical disturbances associated with oxidative stress.
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spelling pubmed-38755662014-01-02 MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress Wang, Qi Hu, Weina Lei, Mingming Wang, Yong Yan, Bing Liu, Jun Zhang, Ren Jin, Yuanzhe PLoS One Research Article BACKGROUND: To investigate if microRNAs (miRNAs) play a role in regulating h-ERG trafficking in the setting of chronic oxidative stress as a common deleterious factor for many cardiac disorders. METHODS: We treated neonatal rat ventricular myocytes and HEK293 cells with stable expression of h-ERG with H(2)O(2) for 12 h and 48 h. Expression of miR-17-5p seed miRNAs was quantified by real-time RT-PCR. Protein levels of chaperones and h-ERG trafficking were measured by Western blot analysis. Luciferase reporter gene assay was used to study miRNA and target interactions. Whole-cell patch-clamp techniques were employed to record h-ERG K(+) current. RESULTS: H-ERG trafficking was impaired by H(2)O(2) after 48 h treatment, accompanied by reciprocal changes of expression between miR-17-5p seed miRNAs and several chaperones (Hsp70, Hsc70, CANX, and Golga2), with the former upregulated and the latter downregulated. We established these chaperones as targets for miR-17-5p. Application miR-17-5p inhibitor rescued H(2)O(2)-induced impairment of h-ERG trafficking. Upregulation of endogenous by H(2)O(2) or forced miR-17-5p expression either reduced h-ERG current. Sequestration of AP1 by its decoy molecule eliminated the upregulation of miR-17-5p, and ameliorated impairment of h-ERG trafficking. CONCLUSIONS: Collectively, deregulation of the miR-17-5p seed family miRNAs can cause severe impairment of h-ERG trafficking through targeting multiple ER stress-related chaperones, and activation of AP1 likely accounts for the deleterious upregulation of these miRNAs, in the setting of prolonged duration of oxidative stress. These findings revealed the role of miRNAs in h-ERG trafficking, which may contribute to the cardiac electrical disturbances associated with oxidative stress. Public Library of Science 2013-12-30 /pmc/articles/PMC3875566/ /pubmed/24386440 http://dx.doi.org/10.1371/journal.pone.0084984 Text en © 2013 Wang 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
Wang, Qi
Hu, Weina
Lei, Mingming
Wang, Yong
Yan, Bing
Liu, Jun
Zhang, Ren
Jin, Yuanzhe
MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title_full MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title_fullStr MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title_full_unstemmed MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title_short MiR-17-5p Impairs Trafficking of H-ERG K(+) Channel Protein by Targeting Multiple ER Stress-Related Chaperones during Chronic Oxidative Stress
title_sort mir-17-5p impairs trafficking of h-erg k(+) channel protein by targeting multiple er stress-related chaperones during chronic oxidative stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875566/
https://www.ncbi.nlm.nih.gov/pubmed/24386440
http://dx.doi.org/10.1371/journal.pone.0084984
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