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Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5

Krüppel-like factors (KLFs) regulate a wide variety of cellular functions and modulate pathological processes. In the present study, a post-translational mechanism of microRNAs (miRs) was investigated in H(2)O(2)-induced human cardiomyocyte (HCM) injury. In H(2)O(2)-cultured HCM cells, reactive oxyg...

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Detalles Bibliográficos
Autores principales: Zhang, Xiuzhou, Liu, Fuyan, Wang, Qingqing, Geng, Yuxue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5647069/
https://www.ncbi.nlm.nih.gov/pubmed/28849090
http://dx.doi.org/10.3892/mmr.2017.7243
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author Zhang, Xiuzhou
Liu, Fuyan
Wang, Qingqing
Geng, Yuxue
author_facet Zhang, Xiuzhou
Liu, Fuyan
Wang, Qingqing
Geng, Yuxue
author_sort Zhang, Xiuzhou
collection PubMed
description Krüppel-like factors (KLFs) regulate a wide variety of cellular functions and modulate pathological processes. In the present study, a post-translational mechanism of microRNAs (miRs) was investigated in H(2)O(2)-induced human cardiomyocyte (HCM) injury. In H(2)O(2)-cultured HCM cells, reactive oxygen species and apoptotic cells were measured via flow cytometry. miR-506/-124 mimics and inhibitors were transfected to induce gain or loss of miR-506/-124 function. Cell proliferation was analyzed by an MTT assay. The targeted genes were predicted by a bioinformatics algorithm and confirmed by a dual luciferase reporter assay. The mRNA and protein expression levels were measured by reverse transcription-polymerse chain reaction analysis and western blotting, respectively. The results indicated that H(2)O(2) induced significant apoptosis and increased the concentration of reactive oxygen species (ROS) in HCMs. H(2)O(2) markedly upregulated the expression levels of KLF4 and KLF5, and downregulated the expression levels of miR-506 and miR-124 in the HCMs. In addition, bioinformatics analysis showed the potential miR-506 and miR-124 binding sites within the 3′-untranslated region of KLF4 and KLF5 in the HCMs. The overexpression of miR-506 and miR-124 inhibited the H(2)O(2)-induced upregulation of KLF4 and KLF5 in the HCMs. The overexpression of miR-506 and miR-214 reversed the H(2)O(2)-induced apoptosis and increase of ROS in the HCMs. In conclusion, the overexpression of miR-506 and miR-214 were confirmed to have a protective effect against H(2)O(2)-induced HCM injury by suppressing the expression of KLF4 and KLF5.
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spelling pubmed-56470692017-10-24 Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5 Zhang, Xiuzhou Liu, Fuyan Wang, Qingqing Geng, Yuxue Mol Med Rep Articles Krüppel-like factors (KLFs) regulate a wide variety of cellular functions and modulate pathological processes. In the present study, a post-translational mechanism of microRNAs (miRs) was investigated in H(2)O(2)-induced human cardiomyocyte (HCM) injury. In H(2)O(2)-cultured HCM cells, reactive oxygen species and apoptotic cells were measured via flow cytometry. miR-506/-124 mimics and inhibitors were transfected to induce gain or loss of miR-506/-124 function. Cell proliferation was analyzed by an MTT assay. The targeted genes were predicted by a bioinformatics algorithm and confirmed by a dual luciferase reporter assay. The mRNA and protein expression levels were measured by reverse transcription-polymerse chain reaction analysis and western blotting, respectively. The results indicated that H(2)O(2) induced significant apoptosis and increased the concentration of reactive oxygen species (ROS) in HCMs. H(2)O(2) markedly upregulated the expression levels of KLF4 and KLF5, and downregulated the expression levels of miR-506 and miR-124 in the HCMs. In addition, bioinformatics analysis showed the potential miR-506 and miR-124 binding sites within the 3′-untranslated region of KLF4 and KLF5 in the HCMs. The overexpression of miR-506 and miR-124 inhibited the H(2)O(2)-induced upregulation of KLF4 and KLF5 in the HCMs. The overexpression of miR-506 and miR-214 reversed the H(2)O(2)-induced apoptosis and increase of ROS in the HCMs. In conclusion, the overexpression of miR-506 and miR-214 were confirmed to have a protective effect against H(2)O(2)-induced HCM injury by suppressing the expression of KLF4 and KLF5. D.A. Spandidos 2017-10 2017-08-14 /pmc/articles/PMC5647069/ /pubmed/28849090 http://dx.doi.org/10.3892/mmr.2017.7243 Text en Copyright: © Zhang et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Zhang, Xiuzhou
Liu, Fuyan
Wang, Qingqing
Geng, Yuxue
Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title_full Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title_fullStr Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title_full_unstemmed Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title_short Overexpressed microRNA-506 and microRNA-124 alleviate H(2)O(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
title_sort overexpressed microrna-506 and microrna-124 alleviate h(2)o(2)-induced human cardiomyocyte dysfunction by targeting krüppel-like factor 4/5
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5647069/
https://www.ncbi.nlm.nih.gov/pubmed/28849090
http://dx.doi.org/10.3892/mmr.2017.7243
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