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MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1

Increased incidence of arrhythmias in women after menopause has been widely documented, which is considered to be related to estrogen (E(2)) deficiency induced cardiac electrophysiological abnormalities. However, its molecular mechanism remains incompletely clear. In the present study, we found card...

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Autores principales: Wang, Ning, Sun, Lu-Yao, Zhang, Shou-Chen, Wei, Ran, Xie, Fang, Liu, Jing, Yan, Yan, Duan, Ming-Jing, Sun, Lin-Lin, Sun, Ying-Hui, Niu, Hui-Fang, Zhang, Rong, Ai, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4366638/
https://www.ncbi.nlm.nih.gov/pubmed/25798059
http://dx.doi.org/10.7150/ijbs.10930
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author Wang, Ning
Sun, Lu-Yao
Zhang, Shou-Chen
Wei, Ran
Xie, Fang
Liu, Jing
Yan, Yan
Duan, Ming-Jing
Sun, Lin-Lin
Sun, Ying-Hui
Niu, Hui-Fang
Zhang, Rong
Ai, Jing
author_facet Wang, Ning
Sun, Lu-Yao
Zhang, Shou-Chen
Wei, Ran
Xie, Fang
Liu, Jing
Yan, Yan
Duan, Ming-Jing
Sun, Lin-Lin
Sun, Ying-Hui
Niu, Hui-Fang
Zhang, Rong
Ai, Jing
author_sort Wang, Ning
collection PubMed
description Increased incidence of arrhythmias in women after menopause has been widely documented, which is considered to be related to estrogen (E(2)) deficiency induced cardiac electrophysiological abnormalities. However, its molecular mechanism remains incompletely clear. In the present study, we found cardiac conduction blockage in post-menopausal rats. Thereafter, the results showed that cardiac gap junctions were impaired and Connexin43 (Cx43) expression was reduced in the myocardium of post-menopausal rats. The phenomenon was also observed in ovariectomized (OVX) rats, which was attenuated by E(2) supplement. Further study displayed that microRNA-23a (miR-23a) level was significantly increased in both post-menopausal and OVX rats, which was reversed by daily E(2) treatment after OVX. Importantly, forced overexpression of miR-23a led to gap junction impairment and Cx43 downregulation in cultured cardiomyocytes, which was rescued by suppressing miR-23a by transfection of miR-23a specific inhibitory oligonucleotide (AMO-23a). GJA1 was identified as the target gene of miR-23a by luciferase assay and miRNA-masking antisense ODN (miR-Mask) assay. We also found that E(2) supplement could reverse cardiac conduction blockage, Cx43 downregulation, gap junction remodeling and miR-23a upregulation in post-menopausal rats. These findings provide the evidence that miR-23a mediated repression of Cx43 participates in estrogen deficiency induced damages of cardiac gap junction, and highlights a new insight into molecular mechanism of post-menopause related arrhythmia at the microRNA level.
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spelling pubmed-43666382015-03-20 MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1 Wang, Ning Sun, Lu-Yao Zhang, Shou-Chen Wei, Ran Xie, Fang Liu, Jing Yan, Yan Duan, Ming-Jing Sun, Lin-Lin Sun, Ying-Hui Niu, Hui-Fang Zhang, Rong Ai, Jing Int J Biol Sci Research Paper Increased incidence of arrhythmias in women after menopause has been widely documented, which is considered to be related to estrogen (E(2)) deficiency induced cardiac electrophysiological abnormalities. However, its molecular mechanism remains incompletely clear. In the present study, we found cardiac conduction blockage in post-menopausal rats. Thereafter, the results showed that cardiac gap junctions were impaired and Connexin43 (Cx43) expression was reduced in the myocardium of post-menopausal rats. The phenomenon was also observed in ovariectomized (OVX) rats, which was attenuated by E(2) supplement. Further study displayed that microRNA-23a (miR-23a) level was significantly increased in both post-menopausal and OVX rats, which was reversed by daily E(2) treatment after OVX. Importantly, forced overexpression of miR-23a led to gap junction impairment and Cx43 downregulation in cultured cardiomyocytes, which was rescued by suppressing miR-23a by transfection of miR-23a specific inhibitory oligonucleotide (AMO-23a). GJA1 was identified as the target gene of miR-23a by luciferase assay and miRNA-masking antisense ODN (miR-Mask) assay. We also found that E(2) supplement could reverse cardiac conduction blockage, Cx43 downregulation, gap junction remodeling and miR-23a upregulation in post-menopausal rats. These findings provide the evidence that miR-23a mediated repression of Cx43 participates in estrogen deficiency induced damages of cardiac gap junction, and highlights a new insight into molecular mechanism of post-menopause related arrhythmia at the microRNA level. Ivyspring International Publisher 2015-02-15 /pmc/articles/PMC4366638/ /pubmed/25798059 http://dx.doi.org/10.7150/ijbs.10930 Text en © 2015 Ivyspring International Publisher. Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited. See http://ivyspring.com/terms for terms and conditions.
spellingShingle Research Paper
Wang, Ning
Sun, Lu-Yao
Zhang, Shou-Chen
Wei, Ran
Xie, Fang
Liu, Jing
Yan, Yan
Duan, Ming-Jing
Sun, Lin-Lin
Sun, Ying-Hui
Niu, Hui-Fang
Zhang, Rong
Ai, Jing
MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title_full MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title_fullStr MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title_full_unstemmed MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title_short MicroRNA-23a Participates in Estrogen Deficiency Induced Gap Junction Remodeling of Rats by Targeting GJA1
title_sort microrna-23a participates in estrogen deficiency induced gap junction remodeling of rats by targeting gja1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4366638/
https://www.ncbi.nlm.nih.gov/pubmed/25798059
http://dx.doi.org/10.7150/ijbs.10930
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