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Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway

When pathological hypertrophy progresses to heart failure (HF), the prognosis is often very poor. Therefore, it is crucial to find new and effective intervention targets. Here, myocardium-specific Trim44 knockout rats were generated using CRISPR-Cas9 technology. Cardiac phenotypic observations revea...

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Autores principales: Jiang, Xiao-yu, Guan, Fei-fei, Ma, Jia-xin, Dong, Wei, Qi, Xiao-long, Zhang, Xu, Chen, Wei, Gao, Shan, Gao, Xiang, Pan, Shuo, Wang, Ji-zheng, Ma, Yuan-wu, Zhang, Lian-feng, Lu, Dan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9441189/
https://www.ncbi.nlm.nih.gov/pubmed/35855640
http://dx.doi.org/10.1242/dmm.049444
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author Jiang, Xiao-yu
Guan, Fei-fei
Ma, Jia-xin
Dong, Wei
Qi, Xiao-long
Zhang, Xu
Chen, Wei
Gao, Shan
Gao, Xiang
Pan, Shuo
Wang, Ji-zheng
Ma, Yuan-wu
Zhang, Lian-feng
Lu, Dan
author_facet Jiang, Xiao-yu
Guan, Fei-fei
Ma, Jia-xin
Dong, Wei
Qi, Xiao-long
Zhang, Xu
Chen, Wei
Gao, Shan
Gao, Xiang
Pan, Shuo
Wang, Ji-zheng
Ma, Yuan-wu
Zhang, Lian-feng
Lu, Dan
author_sort Jiang, Xiao-yu
collection PubMed
description When pathological hypertrophy progresses to heart failure (HF), the prognosis is often very poor. Therefore, it is crucial to find new and effective intervention targets. Here, myocardium-specific Trim44 knockout rats were generated using CRISPR-Cas9 technology. Cardiac phenotypic observations revealed that Trim44 knockout affected cardiac morphology at baseline. Rats with Trim44 deficiency exhibited resistance to cardiac pathological changes in response to stimulation via isoproterenol (ISO) treatment, including improvement of cardiac remodeling and dysfunction by morphological and functional observations, reduced myocardial fibrosis and reduced expression of molecular markers of cardiac stress. Furthermore, signal transduction validation associated with growth and hypertrophy development in vivo and in vitro demonstrated that Trim44 deficiency inhibited the activation of signaling pathways involved in myocardial hypertrophy, especially response to pathological stress. In conclusion, the present study indicates that Trim44 knockout attenuates ISO-induced pathological cardiac remodeling through blocking the AKT/mTOR/GSK3β/P70S6K signaling pathway. This is the first study to demonstrate the function and importance of Trim44 in the heart at baseline and under pathological stress. Trim44 could be a novel therapeutic target for prevention of cardiac hypertrophy and HF.
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spelling pubmed-94411892022-09-06 Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway Jiang, Xiao-yu Guan, Fei-fei Ma, Jia-xin Dong, Wei Qi, Xiao-long Zhang, Xu Chen, Wei Gao, Shan Gao, Xiang Pan, Shuo Wang, Ji-zheng Ma, Yuan-wu Zhang, Lian-feng Lu, Dan Dis Model Mech Research Article When pathological hypertrophy progresses to heart failure (HF), the prognosis is often very poor. Therefore, it is crucial to find new and effective intervention targets. Here, myocardium-specific Trim44 knockout rats were generated using CRISPR-Cas9 technology. Cardiac phenotypic observations revealed that Trim44 knockout affected cardiac morphology at baseline. Rats with Trim44 deficiency exhibited resistance to cardiac pathological changes in response to stimulation via isoproterenol (ISO) treatment, including improvement of cardiac remodeling and dysfunction by morphological and functional observations, reduced myocardial fibrosis and reduced expression of molecular markers of cardiac stress. Furthermore, signal transduction validation associated with growth and hypertrophy development in vivo and in vitro demonstrated that Trim44 deficiency inhibited the activation of signaling pathways involved in myocardial hypertrophy, especially response to pathological stress. In conclusion, the present study indicates that Trim44 knockout attenuates ISO-induced pathological cardiac remodeling through blocking the AKT/mTOR/GSK3β/P70S6K signaling pathway. This is the first study to demonstrate the function and importance of Trim44 in the heart at baseline and under pathological stress. Trim44 could be a novel therapeutic target for prevention of cardiac hypertrophy and HF. The Company of Biologists Ltd 2022-08-22 /pmc/articles/PMC9441189/ /pubmed/35855640 http://dx.doi.org/10.1242/dmm.049444 Text en © 2022. Published by The Company of Biologists Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Jiang, Xiao-yu
Guan, Fei-fei
Ma, Jia-xin
Dong, Wei
Qi, Xiao-long
Zhang, Xu
Chen, Wei
Gao, Shan
Gao, Xiang
Pan, Shuo
Wang, Ji-zheng
Ma, Yuan-wu
Zhang, Lian-feng
Lu, Dan
Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title_full Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title_fullStr Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title_full_unstemmed Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title_short Cardiac-specific Trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of AKT/mTOR pathway
title_sort cardiac-specific trim44 knockout in rat attenuates isoproterenol-induced cardiac remodeling via inhibition of akt/mtor pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9441189/
https://www.ncbi.nlm.nih.gov/pubmed/35855640
http://dx.doi.org/10.1242/dmm.049444
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