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A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair

As central nodes in cardiomyocyte signaling, nuclear AKT appears to play a cardio-protective role in cardiovascular disease. Here we describe a circular RNA, circ-Amotl1 that is highly expressed in neonatal human cardiac tissue, and potentiates AKT-enhanced cardiomyocyte survival. We hypothesize tha...

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Autores principales: Zeng, Yan, Du, William W., Wu, Yingya, Yang, Zhenguo, Awan, Faryal Mehwish, Li, Xiangmin, Yang, Weining, Zhang, Chao, Yang, Qi, Yee, Albert, Chen, Yu, Yang, Fenghua, Sun, Huan, Huang, Ren, Yee, Albert J, Li, Ren-Ke, Wu, Zhongkai, Backx, Peter H, Yang, Burton B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5667408/
https://www.ncbi.nlm.nih.gov/pubmed/29109781
http://dx.doi.org/10.7150/thno.19764
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author Zeng, Yan
Du, William W.
Wu, Yingya
Yang, Zhenguo
Awan, Faryal Mehwish
Li, Xiangmin
Yang, Weining
Zhang, Chao
Yang, Qi
Yee, Albert
Chen, Yu
Yang, Fenghua
Sun, Huan
Huang, Ren
Yee, Albert J
Li, Ren-Ke
Wu, Zhongkai
Backx, Peter H
Yang, Burton B
author_facet Zeng, Yan
Du, William W.
Wu, Yingya
Yang, Zhenguo
Awan, Faryal Mehwish
Li, Xiangmin
Yang, Weining
Zhang, Chao
Yang, Qi
Yee, Albert
Chen, Yu
Yang, Fenghua
Sun, Huan
Huang, Ren
Yee, Albert J
Li, Ren-Ke
Wu, Zhongkai
Backx, Peter H
Yang, Burton B
author_sort Zeng, Yan
collection PubMed
description As central nodes in cardiomyocyte signaling, nuclear AKT appears to play a cardio-protective role in cardiovascular disease. Here we describe a circular RNA, circ-Amotl1 that is highly expressed in neonatal human cardiac tissue, and potentiates AKT-enhanced cardiomyocyte survival. We hypothesize that circ-Amotl1 binds to PDK1 and AKT1, leading to AKT1 phosphorylation and nuclear translocation. In primary cardiomyocytes, epithelial cells, and endothelial cells, we found that forced circ-Amotl1 expression increased the nuclear fraction of pAKT. We further detected increased nuclear pAKT in circ-Amotl1-treated hearts. In vivo, circ-Amotl1 expression was also found to be protective against Doxorubicin (Dox)-induced cardiomyopathy. Putative PDK1- and AKT1-binding sites were then identified in silico. Blocking oligonucleotides could reverse the effects of exogenous circ-Amotl1. We conclude that circ-Amotl1 physically binds to both PDK1 and AKT1, facilitating the cardio-protective nuclear translocation of pAKT.
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spelling pubmed-56674082017-11-06 A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair Zeng, Yan Du, William W. Wu, Yingya Yang, Zhenguo Awan, Faryal Mehwish Li, Xiangmin Yang, Weining Zhang, Chao Yang, Qi Yee, Albert Chen, Yu Yang, Fenghua Sun, Huan Huang, Ren Yee, Albert J Li, Ren-Ke Wu, Zhongkai Backx, Peter H Yang, Burton B Theranostics Research Paper As central nodes in cardiomyocyte signaling, nuclear AKT appears to play a cardio-protective role in cardiovascular disease. Here we describe a circular RNA, circ-Amotl1 that is highly expressed in neonatal human cardiac tissue, and potentiates AKT-enhanced cardiomyocyte survival. We hypothesize that circ-Amotl1 binds to PDK1 and AKT1, leading to AKT1 phosphorylation and nuclear translocation. In primary cardiomyocytes, epithelial cells, and endothelial cells, we found that forced circ-Amotl1 expression increased the nuclear fraction of pAKT. We further detected increased nuclear pAKT in circ-Amotl1-treated hearts. In vivo, circ-Amotl1 expression was also found to be protective against Doxorubicin (Dox)-induced cardiomyopathy. Putative PDK1- and AKT1-binding sites were then identified in silico. Blocking oligonucleotides could reverse the effects of exogenous circ-Amotl1. We conclude that circ-Amotl1 physically binds to both PDK1 and AKT1, facilitating the cardio-protective nuclear translocation of pAKT. Ivyspring International Publisher 2017-08-29 /pmc/articles/PMC5667408/ /pubmed/29109781 http://dx.doi.org/10.7150/thno.19764 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Zeng, Yan
Du, William W.
Wu, Yingya
Yang, Zhenguo
Awan, Faryal Mehwish
Li, Xiangmin
Yang, Weining
Zhang, Chao
Yang, Qi
Yee, Albert
Chen, Yu
Yang, Fenghua
Sun, Huan
Huang, Ren
Yee, Albert J
Li, Ren-Ke
Wu, Zhongkai
Backx, Peter H
Yang, Burton B
A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title_full A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title_fullStr A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title_full_unstemmed A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title_short A Circular RNA Binds To and Activates AKT Phosphorylation and Nuclear Localization Reducing Apoptosis and Enhancing Cardiac Repair
title_sort circular rna binds to and activates akt phosphorylation and nuclear localization reducing apoptosis and enhancing cardiac repair
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5667408/
https://www.ncbi.nlm.nih.gov/pubmed/29109781
http://dx.doi.org/10.7150/thno.19764
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