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Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling

Human cardiovascular system has adapted to Earth's gravity of 1G. The microgravity during space flight can induce cardiac remodeling and decline of cardiac function. At present, the mechanism of cardiac remodeling induced by microgravity remains to be disclosed. Casein kinase-2 interacting prot...

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Autores principales: Ling, Shukuan, Li, Yuheng, Zhong, Guohui, Zheng, Yongjun, Xu, Qing, Zhao, Dingsheng, Sun, Weijia, Jin, Xiaoyan, Li, Hongxing, Li, Jianwei, Sun, Huiyuan, Cao, Dengchao, Song, Jinping, Liu, Caizhi, Yuan, Xinxin, Wu, Xiaorui, Zhao, Yinlong, Liu, Zizhong, Li, Qi, Li, Yingxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788970/
https://www.ncbi.nlm.nih.gov/pubmed/29422872
http://dx.doi.org/10.3389/fphys.2018.00040
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author Ling, Shukuan
Li, Yuheng
Zhong, Guohui
Zheng, Yongjun
Xu, Qing
Zhao, Dingsheng
Sun, Weijia
Jin, Xiaoyan
Li, Hongxing
Li, Jianwei
Sun, Huiyuan
Cao, Dengchao
Song, Jinping
Liu, Caizhi
Yuan, Xinxin
Wu, Xiaorui
Zhao, Yinlong
Liu, Zizhong
Li, Qi
Li, Yingxian
author_facet Ling, Shukuan
Li, Yuheng
Zhong, Guohui
Zheng, Yongjun
Xu, Qing
Zhao, Dingsheng
Sun, Weijia
Jin, Xiaoyan
Li, Hongxing
Li, Jianwei
Sun, Huiyuan
Cao, Dengchao
Song, Jinping
Liu, Caizhi
Yuan, Xinxin
Wu, Xiaorui
Zhao, Yinlong
Liu, Zizhong
Li, Qi
Li, Yingxian
author_sort Ling, Shukuan
collection PubMed
description Human cardiovascular system has adapted to Earth's gravity of 1G. The microgravity during space flight can induce cardiac remodeling and decline of cardiac function. At present, the mechanism of cardiac remodeling induced by microgravity remains to be disclosed. Casein kinase-2 interacting protein-1 (CKIP-1) is an important inhibitor of pressure-overload induced cardiac remodeling by decreasing the phosphorylation level of HDAC4. However, the role of CKIP-1 in the cardiac remodeling induced by microgravity is unknown. The purpose of this study was to determine whether CKIP-1 was also involved in the regulation of cardiac remodeling induced by microgravity. We first detected the expression of CKIP-1 in the heart from mice and monkey after simulated microgravity using Q-PCR and western blotting. Then, myocardial specific CKIP-1 transgenic (TG) and wild type mice were hindlimb-suspended (HU) to simulate microgravity effect. We estimated the cardiac remodeling in morphology and function by histological analysis and echocardiography. Finally, we detected the phosphorylation of AMPK, ERK1/2, and HDAC4 in the heart from wild type and CKIP-1 transgenic mice after HU. The results revealed the reduced expression of CKIP-1 in the heart both from mice and monkey after simulated microgravity. Myocardial CKIP-1 overexpression protected from simulated microgravity-induced decline of cardiac function and loss of left ventricular mass. Histological analysis demonstrated CKIP-1 TG inhibited the decreases in the size of individual cardiomyocytes of mice after hindlimb unloading. CKIP-1 TG can inhibit the activation of HDAC4 and ERK1/2 and the inactivation of AMPK in heart of mice induced by simulated microgravity. These results demonstrated CKIP-1 was a suppressor of cardiac remodeling induced by simulated microgravity.
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spelling pubmed-57889702018-02-08 Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling Ling, Shukuan Li, Yuheng Zhong, Guohui Zheng, Yongjun Xu, Qing Zhao, Dingsheng Sun, Weijia Jin, Xiaoyan Li, Hongxing Li, Jianwei Sun, Huiyuan Cao, Dengchao Song, Jinping Liu, Caizhi Yuan, Xinxin Wu, Xiaorui Zhao, Yinlong Liu, Zizhong Li, Qi Li, Yingxian Front Physiol Physiology Human cardiovascular system has adapted to Earth's gravity of 1G. The microgravity during space flight can induce cardiac remodeling and decline of cardiac function. At present, the mechanism of cardiac remodeling induced by microgravity remains to be disclosed. Casein kinase-2 interacting protein-1 (CKIP-1) is an important inhibitor of pressure-overload induced cardiac remodeling by decreasing the phosphorylation level of HDAC4. However, the role of CKIP-1 in the cardiac remodeling induced by microgravity is unknown. The purpose of this study was to determine whether CKIP-1 was also involved in the regulation of cardiac remodeling induced by microgravity. We first detected the expression of CKIP-1 in the heart from mice and monkey after simulated microgravity using Q-PCR and western blotting. Then, myocardial specific CKIP-1 transgenic (TG) and wild type mice were hindlimb-suspended (HU) to simulate microgravity effect. We estimated the cardiac remodeling in morphology and function by histological analysis and echocardiography. Finally, we detected the phosphorylation of AMPK, ERK1/2, and HDAC4 in the heart from wild type and CKIP-1 transgenic mice after HU. The results revealed the reduced expression of CKIP-1 in the heart both from mice and monkey after simulated microgravity. Myocardial CKIP-1 overexpression protected from simulated microgravity-induced decline of cardiac function and loss of left ventricular mass. Histological analysis demonstrated CKIP-1 TG inhibited the decreases in the size of individual cardiomyocytes of mice after hindlimb unloading. CKIP-1 TG can inhibit the activation of HDAC4 and ERK1/2 and the inactivation of AMPK in heart of mice induced by simulated microgravity. These results demonstrated CKIP-1 was a suppressor of cardiac remodeling induced by simulated microgravity. Frontiers Media S.A. 2018-01-25 /pmc/articles/PMC5788970/ /pubmed/29422872 http://dx.doi.org/10.3389/fphys.2018.00040 Text en Copyright © 2018 Ling, Li, Zhong, Zheng, Xu, Zhao, Sun, Jin, Li, Li, Sun, Cao, Song, Liu, Yuan, Wu, Zhao, Liu, Li and Li. 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) or licensor 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 Physiology
Ling, Shukuan
Li, Yuheng
Zhong, Guohui
Zheng, Yongjun
Xu, Qing
Zhao, Dingsheng
Sun, Weijia
Jin, Xiaoyan
Li, Hongxing
Li, Jianwei
Sun, Huiyuan
Cao, Dengchao
Song, Jinping
Liu, Caizhi
Yuan, Xinxin
Wu, Xiaorui
Zhao, Yinlong
Liu, Zizhong
Li, Qi
Li, Yingxian
Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title_full Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title_fullStr Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title_full_unstemmed Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title_short Myocardial CKIP-1 Overexpression Protects from Simulated Microgravity-Induced Cardiac Remodeling
title_sort myocardial ckip-1 overexpression protects from simulated microgravity-induced cardiac remodeling
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5788970/
https://www.ncbi.nlm.nih.gov/pubmed/29422872
http://dx.doi.org/10.3389/fphys.2018.00040
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