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Restored autophagy is protective against PAK3-induced cardiac dysfunction

Despite the development of clinical treatments, heart failure remains the leading cause of mortality. We observed that p21-activated kinase 3 (PAK3) was augmented in failing human and mouse hearts. Furthermore, mice with cardiac-specific PAK3 overexpression exhibited exacerbated pathological remodel...

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Autores principales: Ruiz-Velasco, Andrea, Raja, Rida, Chen, Xinyi, Ganenthiran, Haresh, Kaur, Namrita, Alatawi, Nasser hawimel o, Miller, Jessica M., Abouleisa, Riham R.E., Ou, Qinghui, Zhao, Xiangjun, Fonseka, Oveena, Wang, Xin, Hille, Susanne S., Frey, Norbert, Wang, Tao, Mohamed, Tamer M.A., Müller, Oliver J., Cartwright, Elizabeth J., Liu, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265534/
https://www.ncbi.nlm.nih.gov/pubmed/37324527
http://dx.doi.org/10.1016/j.isci.2023.106970
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author Ruiz-Velasco, Andrea
Raja, Rida
Chen, Xinyi
Ganenthiran, Haresh
Kaur, Namrita
Alatawi, Nasser hawimel o
Miller, Jessica M.
Abouleisa, Riham R.E.
Ou, Qinghui
Zhao, Xiangjun
Fonseka, Oveena
Wang, Xin
Hille, Susanne S.
Frey, Norbert
Wang, Tao
Mohamed, Tamer M.A.
Müller, Oliver J.
Cartwright, Elizabeth J.
Liu, Wei
author_facet Ruiz-Velasco, Andrea
Raja, Rida
Chen, Xinyi
Ganenthiran, Haresh
Kaur, Namrita
Alatawi, Nasser hawimel o
Miller, Jessica M.
Abouleisa, Riham R.E.
Ou, Qinghui
Zhao, Xiangjun
Fonseka, Oveena
Wang, Xin
Hille, Susanne S.
Frey, Norbert
Wang, Tao
Mohamed, Tamer M.A.
Müller, Oliver J.
Cartwright, Elizabeth J.
Liu, Wei
author_sort Ruiz-Velasco, Andrea
collection PubMed
description Despite the development of clinical treatments, heart failure remains the leading cause of mortality. We observed that p21-activated kinase 3 (PAK3) was augmented in failing human and mouse hearts. Furthermore, mice with cardiac-specific PAK3 overexpression exhibited exacerbated pathological remodeling and deteriorated cardiac function. Myocardium with PAK3 overexpression displayed hypertrophic growth, excessive fibrosis, and aggravated apoptosis following isoprenaline stimulation as early as two days. Mechanistically, using cultured cardiomyocytes and human-relevant samples under distinct stimulations, we, for the first time, demonstrated that PAK3 acts as a suppressor of autophagy through hyper-activation of the mechanistic target of rapamycin complex 1 (mTORC1). Defective autophagy in the myocardium contributes to the progression of heart failure. More importantly, PAK3-provoked cardiac dysfunction was mitigated by administering an autophagic inducer. Our study illustrates a unique role of PAK3 in autophagy regulation and the therapeutic potential of targeting this axis for heart failure.
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spelling pubmed-102655342023-06-15 Restored autophagy is protective against PAK3-induced cardiac dysfunction Ruiz-Velasco, Andrea Raja, Rida Chen, Xinyi Ganenthiran, Haresh Kaur, Namrita Alatawi, Nasser hawimel o Miller, Jessica M. Abouleisa, Riham R.E. Ou, Qinghui Zhao, Xiangjun Fonseka, Oveena Wang, Xin Hille, Susanne S. Frey, Norbert Wang, Tao Mohamed, Tamer M.A. Müller, Oliver J. Cartwright, Elizabeth J. Liu, Wei iScience Article Despite the development of clinical treatments, heart failure remains the leading cause of mortality. We observed that p21-activated kinase 3 (PAK3) was augmented in failing human and mouse hearts. Furthermore, mice with cardiac-specific PAK3 overexpression exhibited exacerbated pathological remodeling and deteriorated cardiac function. Myocardium with PAK3 overexpression displayed hypertrophic growth, excessive fibrosis, and aggravated apoptosis following isoprenaline stimulation as early as two days. Mechanistically, using cultured cardiomyocytes and human-relevant samples under distinct stimulations, we, for the first time, demonstrated that PAK3 acts as a suppressor of autophagy through hyper-activation of the mechanistic target of rapamycin complex 1 (mTORC1). Defective autophagy in the myocardium contributes to the progression of heart failure. More importantly, PAK3-provoked cardiac dysfunction was mitigated by administering an autophagic inducer. Our study illustrates a unique role of PAK3 in autophagy regulation and the therapeutic potential of targeting this axis for heart failure. Elsevier 2023-05-26 /pmc/articles/PMC10265534/ /pubmed/37324527 http://dx.doi.org/10.1016/j.isci.2023.106970 Text en © 2023 The Authors. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Ruiz-Velasco, Andrea
Raja, Rida
Chen, Xinyi
Ganenthiran, Haresh
Kaur, Namrita
Alatawi, Nasser hawimel o
Miller, Jessica M.
Abouleisa, Riham R.E.
Ou, Qinghui
Zhao, Xiangjun
Fonseka, Oveena
Wang, Xin
Hille, Susanne S.
Frey, Norbert
Wang, Tao
Mohamed, Tamer M.A.
Müller, Oliver J.
Cartwright, Elizabeth J.
Liu, Wei
Restored autophagy is protective against PAK3-induced cardiac dysfunction
title Restored autophagy is protective against PAK3-induced cardiac dysfunction
title_full Restored autophagy is protective against PAK3-induced cardiac dysfunction
title_fullStr Restored autophagy is protective against PAK3-induced cardiac dysfunction
title_full_unstemmed Restored autophagy is protective against PAK3-induced cardiac dysfunction
title_short Restored autophagy is protective against PAK3-induced cardiac dysfunction
title_sort restored autophagy is protective against pak3-induced cardiac dysfunction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265534/
https://www.ncbi.nlm.nih.gov/pubmed/37324527
http://dx.doi.org/10.1016/j.isci.2023.106970
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