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Updated: Jun 2, 2025

Investigating the Pathogenesis of MYH7 Mutation Gly823Glu in Familial Hypertrophic Cardiomyopathy using a Mouse Model
Published on: August 8, 2022
Contribution of hypoxia-inducible factor 1alpha to pathogenesis of sarcomeric hypertrophic cardiomyopathy
Sarala Raj Murthi1, Andreas Petry2, Bachuki Shashikadze3
1Department of Congenital Heart Defects and Pediatric Cardiology, German Heart Center Munich, TUM University Hospital, School of Medicine & Health, Technical University of Munich, Munich, Germany.
Insights
Hypoxia-inducible factor-1α (HIF-1α) drives hypertrophic cardiomyopathy (HCM) progression. Blocking HIF-1α in heart cells reduced disease markers in a mouse model, suggesting HIF-1α as a therapeutic target for inherited heart disease.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Genetics
Background:
- Hypertrophic cardiomyopathy (HCM) is the most common inherited heart disease, caused by sarcomeric protein gene mutations.
- HCM leads to myocardial hypertrophy, fibrosis, and ventricular dysfunction.
- Hypoxia-inducible factor-1α (HIF-1α) is implicated in cellular hypoxia response and HCM, but its precise role is unclear.
Purpose of the Study:
- To investigate the role of cardiomyocyte-specific HIF-1α (HIF-1α) in the pathogenesis of HCM.
- To evaluate the therapeutic potential of targeting HIF-1α in an established mouse model of HCM.
Main Methods:
- Utilized an α-MHC719/+ mouse model exhibiting classical HCM features.
- Generated cardiomyocyte-specific Hif-1a knockout (cHif1aKO) mice.
- Performed whole transcriptome and proteomics analysis on left ventricular tissue and serum samples from patients.
Main Results:
- HIF-1α and its targets were upregulated in the hearts of HCM mice.
- Cardiomyocyte-specific knockout of Hif-1a attenuated HCM phenotype, reducing cardiac hypertrophy, fibrosis, and oxidative stress.
- Transcriptome and proteomics revealed normalization of pro-hypertrophic and pro-fibrotic signaling pathways.
- Serum proteomics from early-onset HCM patients showed significant HIF modulation.
Conclusions:
- HIF signaling is a key player in both mouse and human HCM pathogenesis.
- Targeting HIF-1α in cardiomyocytes can mitigate disease progression in HCM.
- HIF-1α inhibition presents a potential therapeutic strategy for managing HCM.
Abstract:
Hypertrophic cardiomyopathy (HCM) caused by autosomal-dominant mutations in genes coding for structural sarcomeric proteins, is the most common inherited heart disease. HCM is associated with myocardial hypertrophy, fibrosis and ventricular dysfunction. Hypoxia-inducible transcription factor-1α (Hif-1α) is the central master regulators of cellular hypoxia response and associated with HCM. Yet its exact role remains to be elucidated. Therefore, the effect of a cardiomyocyte-specific Hif-1a knockout (cHif1aKO) was studied in an established α-MHC719/+ HCM mouse model that exhibits the classical features of human HCM. The results show that Hif-1α protein and HIF targets were upregulated in left ventricular tissue of α-MHC719/+ mice. Cardiomyocyte-specific abolishment of Hif-1a blunted the disease phenotype, as evidenced by decreased left ventricular wall thickness, reduced myocardial fibrosis, disordered SRX/DRX state and ROS production. cHif1aKO induced normalization of pro-hypertrophic and pro-fibrotic left ventricular remodeling signaling evidenced on whole transcriptome and proteomics analysis in α-MHC719/+ mice. Proteomics of serum samples from patients with early onset HCM revealed significant modulation of HIF. These results demonstrate that HIF signaling is involved in mouse and human HCM pathogenesis. Cardiomyocyte-specific knockout of Hif-1a attenuates disease phenotype in the mouse model. Targeting Hif-1α might serve as a therapeutic option to mitigate HCM disease progression.
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