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CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway

The mammalian heart possesses entire regeneration capacity after birth, which is lost in adulthood. The role of the kinase network in myocardial regeneration remains largely elusive. SGK3 (threonine-protein kinase 3) is a functional kinase we identified previously with the capacity to promote cardio...

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Autores principales: Sun, Jiateng, Yang, Tongtong, Wei, Tianwen, Zhou, Liuhua, Shan, Tiankai, Chen, Jiawen, Gu, Lingfeng, Chen, Bingrui, Liu, Liu, Jiang, Qiqi, Du, Chong, Ma, Yao, Wang, Hao, Chen, Feng, Guo, Xuejiang, Ji, Yong, Wang, Liansheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9445272/
https://www.ncbi.nlm.nih.gov/pubmed/36082129
http://dx.doi.org/10.3389/fcvm.2022.970745
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author Sun, Jiateng
Yang, Tongtong
Wei, Tianwen
Zhou, Liuhua
Shan, Tiankai
Chen, Jiawen
Gu, Lingfeng
Chen, Bingrui
Liu, Liu
Jiang, Qiqi
Du, Chong
Ma, Yao
Wang, Hao
Chen, Feng
Guo, Xuejiang
Ji, Yong
Wang, Liansheng
author_facet Sun, Jiateng
Yang, Tongtong
Wei, Tianwen
Zhou, Liuhua
Shan, Tiankai
Chen, Jiawen
Gu, Lingfeng
Chen, Bingrui
Liu, Liu
Jiang, Qiqi
Du, Chong
Ma, Yao
Wang, Hao
Chen, Feng
Guo, Xuejiang
Ji, Yong
Wang, Liansheng
author_sort Sun, Jiateng
collection PubMed
description The mammalian heart possesses entire regeneration capacity after birth, which is lost in adulthood. The role of the kinase network in myocardial regeneration remains largely elusive. SGK3 (threonine-protein kinase 3) is a functional kinase we identified previously with the capacity to promote cardiomyocyte proliferation and cardiac repair after myocardial infarction. However, the upstream signals regulating SGK3 are still unknown. Based on the quantitative phosphoproteomics data and pulldown assay, we identified cyclin-dependent kinase 9 (CDK9) as a novel therapeutic target in regeneration therapy. The direct combination between CDK9 and SGK3 was further confirmed by co-immunoprecipitation (Co-IP). CDK9 is highly expressed in the newborn period and rarely detected in the adult myocardium. In vitro, the proliferation ratio of primary cardiomyocytes was significantly elevated by CDK9 overexpression while inhibited by CDK9 knockdown. In vivo, inhibition of CDK9 shortened the time window of cardiac regeneration after apical resection (AR) in neonatal mice, while overexpression of CDK9 significantly promoted mature cardiomyocytes (CMs) to re-enter the cell cycle and cardiac repair after myocardial infarction (MI) in adult mice. Mechanistically, CDK9 promoted cardiac repair by directly activating SGK3 and downstream GSK-3β/β-catenin pathway. Consequently, our study indicated that CDK9 might be a novel target for MI therapy by stimulating myocardial regeneration.
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spelling pubmed-94452722022-09-07 CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway Sun, Jiateng Yang, Tongtong Wei, Tianwen Zhou, Liuhua Shan, Tiankai Chen, Jiawen Gu, Lingfeng Chen, Bingrui Liu, Liu Jiang, Qiqi Du, Chong Ma, Yao Wang, Hao Chen, Feng Guo, Xuejiang Ji, Yong Wang, Liansheng Front Cardiovasc Med Cardiovascular Medicine The mammalian heart possesses entire regeneration capacity after birth, which is lost in adulthood. The role of the kinase network in myocardial regeneration remains largely elusive. SGK3 (threonine-protein kinase 3) is a functional kinase we identified previously with the capacity to promote cardiomyocyte proliferation and cardiac repair after myocardial infarction. However, the upstream signals regulating SGK3 are still unknown. Based on the quantitative phosphoproteomics data and pulldown assay, we identified cyclin-dependent kinase 9 (CDK9) as a novel therapeutic target in regeneration therapy. The direct combination between CDK9 and SGK3 was further confirmed by co-immunoprecipitation (Co-IP). CDK9 is highly expressed in the newborn period and rarely detected in the adult myocardium. In vitro, the proliferation ratio of primary cardiomyocytes was significantly elevated by CDK9 overexpression while inhibited by CDK9 knockdown. In vivo, inhibition of CDK9 shortened the time window of cardiac regeneration after apical resection (AR) in neonatal mice, while overexpression of CDK9 significantly promoted mature cardiomyocytes (CMs) to re-enter the cell cycle and cardiac repair after myocardial infarction (MI) in adult mice. Mechanistically, CDK9 promoted cardiac repair by directly activating SGK3 and downstream GSK-3β/β-catenin pathway. Consequently, our study indicated that CDK9 might be a novel target for MI therapy by stimulating myocardial regeneration. Frontiers Media S.A. 2022-08-23 /pmc/articles/PMC9445272/ /pubmed/36082129 http://dx.doi.org/10.3389/fcvm.2022.970745 Text en Copyright © 2022 Sun, Yang, Wei, Zhou, Shan, Chen, Gu, Chen, Liu, Jiang, Du, Ma, Wang, Chen, Guo, Ji and Wang. https://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) and the copyright owner(s) 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 Cardiovascular Medicine
Sun, Jiateng
Yang, Tongtong
Wei, Tianwen
Zhou, Liuhua
Shan, Tiankai
Chen, Jiawen
Gu, Lingfeng
Chen, Bingrui
Liu, Liu
Jiang, Qiqi
Du, Chong
Ma, Yao
Wang, Hao
Chen, Feng
Guo, Xuejiang
Ji, Yong
Wang, Liansheng
CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title_full CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title_fullStr CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title_full_unstemmed CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title_short CDK9 binds and activates SGK3 to promote cardiac repair after injury via the GSK-3β/β-catenin pathway
title_sort cdk9 binds and activates sgk3 to promote cardiac repair after injury via the gsk-3β/β-catenin pathway
topic Cardiovascular Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9445272/
https://www.ncbi.nlm.nih.gov/pubmed/36082129
http://dx.doi.org/10.3389/fcvm.2022.970745
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