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Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running

Appropriate exercise such as voluntary wheel-running can induce physiological cardiac hypertrophy. Notch1 plays an important role in cardiac hypertrophy; however, the experimental results are inconsistent. In this experiment, we aimed to explore the role of Notch1 in physiological cardiac hypertroph...

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Detalles Bibliográficos
Autores principales: Zhang, Weiwei, Liu, Jiayi, Wu, Zekang, Fan, Guanwei, Yang, Zhuo, Liu, Chunhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966550/
https://www.ncbi.nlm.nih.gov/pubmed/36834623
http://dx.doi.org/10.3390/ijms24043212
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author Zhang, Weiwei
Liu, Jiayi
Wu, Zekang
Fan, Guanwei
Yang, Zhuo
Liu, Chunhua
author_facet Zhang, Weiwei
Liu, Jiayi
Wu, Zekang
Fan, Guanwei
Yang, Zhuo
Liu, Chunhua
author_sort Zhang, Weiwei
collection PubMed
description Appropriate exercise such as voluntary wheel-running can induce physiological cardiac hypertrophy. Notch1 plays an important role in cardiac hypertrophy; however, the experimental results are inconsistent. In this experiment, we aimed to explore the role of Notch1 in physiological cardiac hypertrophy. Twenty-nine adult male mice were randomly divided into a Notch1 heterozygous deficient control (Notch1(+/−) CON) group, a Notch1 heterozygous deficient running (Notch1(+/−) RUN) group, a wild type control (WT CON) group, and a wild type running (WT RUN) group. Mice in the Notch1(+/−) RUN and WT RUN groups had access to voluntary wheel-running for two weeks. Next, the cardiac function of all of the mice was examined by echocardiography. The H&E staining, Masson trichrome staining, and a Western blot assay were carried out to analyze cardiac hypertrophy, cardiac fibrosis, and the expression of proteins relating to cardiac hypertrophy. After two-weeks of running, the Notch1 receptor expression was decreased in the hearts of the WT RUN group. The degree of cardiac hypertrophy in the Notch1(+/−) RUN mice was lower than that of their littermate control. Compared to the Notch1(+/−) CON group, Notch1 heterozygous deficiency could lead to a decrease in Beclin-1 expression and the ratio of LC3II/LC3I in the Notch1(+/−) RUN group. The results suggest that Notch1 heterozygous deficiency could partly dampen the induction of autophagy. Moreover, Notch1 deficiency may lead to the inactivation of p38 and the reduction of β-catenin expression in the Notch1(+/−) RUN group. In conclusion, Notch1 plays a critical role in physiologic cardiac hypertrophy through the p38 signaling pathway. Our results will help to understand the underlying mechanism of Notch1 on physiological cardiac hypertrophy.
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spelling pubmed-99665502023-02-26 Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running Zhang, Weiwei Liu, Jiayi Wu, Zekang Fan, Guanwei Yang, Zhuo Liu, Chunhua Int J Mol Sci Communication Appropriate exercise such as voluntary wheel-running can induce physiological cardiac hypertrophy. Notch1 plays an important role in cardiac hypertrophy; however, the experimental results are inconsistent. In this experiment, we aimed to explore the role of Notch1 in physiological cardiac hypertrophy. Twenty-nine adult male mice were randomly divided into a Notch1 heterozygous deficient control (Notch1(+/−) CON) group, a Notch1 heterozygous deficient running (Notch1(+/−) RUN) group, a wild type control (WT CON) group, and a wild type running (WT RUN) group. Mice in the Notch1(+/−) RUN and WT RUN groups had access to voluntary wheel-running for two weeks. Next, the cardiac function of all of the mice was examined by echocardiography. The H&E staining, Masson trichrome staining, and a Western blot assay were carried out to analyze cardiac hypertrophy, cardiac fibrosis, and the expression of proteins relating to cardiac hypertrophy. After two-weeks of running, the Notch1 receptor expression was decreased in the hearts of the WT RUN group. The degree of cardiac hypertrophy in the Notch1(+/−) RUN mice was lower than that of their littermate control. Compared to the Notch1(+/−) CON group, Notch1 heterozygous deficiency could lead to a decrease in Beclin-1 expression and the ratio of LC3II/LC3I in the Notch1(+/−) RUN group. The results suggest that Notch1 heterozygous deficiency could partly dampen the induction of autophagy. Moreover, Notch1 deficiency may lead to the inactivation of p38 and the reduction of β-catenin expression in the Notch1(+/−) RUN group. In conclusion, Notch1 plays a critical role in physiologic cardiac hypertrophy through the p38 signaling pathway. Our results will help to understand the underlying mechanism of Notch1 on physiological cardiac hypertrophy. MDPI 2023-02-06 /pmc/articles/PMC9966550/ /pubmed/36834623 http://dx.doi.org/10.3390/ijms24043212 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Zhang, Weiwei
Liu, Jiayi
Wu, Zekang
Fan, Guanwei
Yang, Zhuo
Liu, Chunhua
Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title_full Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title_fullStr Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title_full_unstemmed Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title_short Notch1 Is Involved in Physiologic Cardiac Hypertrophy of Mice via the p38 Signaling Pathway after Voluntary Running
title_sort notch1 is involved in physiologic cardiac hypertrophy of mice via the p38 signaling pathway after voluntary running
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966550/
https://www.ncbi.nlm.nih.gov/pubmed/36834623
http://dx.doi.org/10.3390/ijms24043212
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