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MYH7 R453C induced cardiac remodelling via activating TGF-β/Smad2/3, ERK1/2 and Nox4/ROS/NF-κB signalling pathways.
- Source :
-
Open biology [Open Biol] 2024 Jun; Vol. 14 (6), pp. 230427. Date of Electronic Publication: 2024 Jun 12. - Publication Year :
- 2024
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Abstract
- Hypertrophic cardiomyopathy (HCM) is a monogenic cardiac disorder commonly induced by sarcomere gene mutations. However, the mechanism for HCM is not well defined. Here, we generated transgenic MYH7 R453C and MYH6 R453C piglets and found both developed typical cardiac hypertrophy. Unexpectedly, we found serious fibrosis and cardiomyocyte loss in the ventricular of MYH7 R453C, not MYH6 R453C piglets, similar to HCM patients. Then, RNA-seq analysis and western blotting identified the activation of ERK1/2 and PI3K-Akt pathways in MYH7 R453C. Moreover, we observed an increased expression of fetal genes and an excess of reactive oxygen species (ROS) in MYH7 R453C piglet models, which was produced by Nox4 and subsequently induced inflammatory response. Additionally, the phosphorylation levels of Smad2/3, ERK1/2 and NF-kB p65 proteins were elevated in cardiomyocytes with the MYH7 R453C mutation. Furthermore, epigallocatechin gallate, a natural bioactive compound, could be used as a drug to reduce cell death by adjusting significant downregulation of the protein expression of Bax and upregulated Bcl-2 levels in the H9C2 models with MYH7 R453C mutation. In conclusion, our study illustrated that TGF-β/Smad2/3, ERK1/2 and Nox4/ROS pathways have synergistic effects on cardiac remodelling and inflammation in MYH7 R453C mutation.
- Subjects :
- Animals
Swine
Myocytes, Cardiac metabolism
Humans
Cardiac Myosins metabolism
Cardiac Myosins genetics
Disease Models, Animal
MAP Kinase Signaling System
Animals, Genetically Modified
Smad2 Protein metabolism
Smad2 Protein genetics
Mutation
Smad3 Protein metabolism
Smad3 Protein genetics
Ventricular Remodeling
Cardiomyopathy, Hypertrophic metabolism
Cardiomyopathy, Hypertrophic genetics
Cardiomyopathy, Hypertrophic pathology
Rats
Myosin Heavy Chains metabolism
Myosin Heavy Chains genetics
Transforming Growth Factor beta metabolism
NADPH Oxidase 4 metabolism
NADPH Oxidase 4 genetics
Reactive Oxygen Species metabolism
NF-kappa B metabolism
Signal Transduction
Subjects
Details
- Language :
- English
- ISSN :
- 2046-2441
- Volume :
- 14
- Issue :
- 6
- Database :
- MEDLINE
- Journal :
- Open biology
- Publication Type :
- Academic Journal
- Accession number :
- 38862020
- Full Text :
- https://doi.org/10.1098/rsob.230427