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A Doxorubicin-induced Cardiomyopathy Model in Adult Zebrafish
Published on: June 7, 2018
A Heterozygous Mutation in Cardiac Troponin T Promotes Ca2+ Dysregulation and Adult Cardiomyopathy in Zebrafish
Sarah M Kamel1, Charlotte D Koopman1,2, Fabian Kruse1
1Hubrecht Institute-KNAW, University Medical Center Utrecht, 3584 CT Utrecht, The Netherlands.
Abstract:
Cardiomyopathies are a group of heterogeneous diseases that affect the muscles of the heart, leading to early morbidity and mortality in young and adults. Genetic forms of cardiomyopathy are caused predominantly by mutations in structural components of the cardiomyocyte sarcomeres, the contractile units of the heart, which includes cardiac Troponin T (TnT). Here, we generated mutations with CRISPR/Cas9 technology in the zebrafish tnnt2a gene, encoding cardiac TnT, at a mutational "hotspot" site to establish a zebrafish model for genetic cardiomyopathies. We found that a heterozygous tnnt2a mutation deleting Arginine at position 94 and Lysine at position 95 of TnT causes progressive cardiac structural changes resulting in heart failure. The cardiac remodeling is presented by an enlarged atrium, decreased ventricle size, increased myocardial stress as well as increased fibrosis. As early as five days post fertilization, larvae carrying the TnT RK94del mutation display diastolic dysfunction and impaired calcium dynamics related to increased Ca2+ sensitivity. In conclusion, adult zebrafish with a heterozygous TnT-RK94del mutation develop cardiomyopathy as seen in patients with TnT mutations and therefore represent a promising model to study disease mechanisms and to screen for putative therapeutic compounds.
Insights
Researchers created a zebrafish model for genetic cardiomyopathies by mutating the cardiac Troponin T (TnT) gene. This model exhibits heart failure, offering a new way to study heart muscle diseases.
Area of Science:
- Cardiovascular Biology
- Genetics and Genomics
- Zebrafish Models
Background:
- Cardiomyopathies cause significant morbidity and mortality.
- Genetic mutations in sarcomeric proteins, like cardiac Troponin T (TnT), are a primary cause of inherited cardiomyopathies.
Purpose of the Study:
- To develop a novel zebrafish model for studying genetic cardiomyopathies.
- To investigate the functional consequences of a specific TnT mutation using CRISPR/Cas9 technology.
Main Methods:
- CRISPR/Cas9 gene editing was used to introduce mutations in the zebrafish tnnt2a gene, which encodes cardiac TnT.
- Zebrafish carrying a heterozygous mutation (RK94del) were analyzed for cardiac structure, function, and calcium dynamics.
Main Results:
- The TnT RK94del mutation led to progressive cardiac remodeling, including atrial enlargement and ventricular hypoplasia.
- Mutant zebrafish displayed diastolic dysfunction, impaired calcium handling, and increased myocardial fibrosis.
- Early signs of heart failure were observed in larvae as young as five days post-fertilization.
Conclusions:
- The heterozygous TnT-RK94del zebrafish model recapitulates key features of human TnT-associated cardiomyopathies.
- This zebrafish model provides a valuable platform for elucidating disease mechanisms and for preclinical screening of therapeutic interventions.

