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Updated: Sep 26, 2025

Induction of Right Ventricular Failure by Pulmonary Artery Constriction and Evaluation of Right Ventricular Function in Mice
Published on: May 13, 2019
Progressive Reduction in Right Ventricular Contractile Function Attributable to Altered Actin Expression in an Aging
Emmanuel M Camors1,2, Alyson H Roth1,2, Joseph R Alef1,2
1Heart Institute, Department of Pediatrics, University of Tennessee Health Science Center, Memphis (E.M.C., A.H.R., J.R.A., J.N.J., E.P., J.A.T.).
Background:
Arrhythmogenic cardiomyopathy (ACM) is an inherited genetic disorder of desmosomal dysfunction, and PKP2 (plakophilin-2) has been reported to be the most common disease-causing gene when mutation-positive. In the early concealed phase, the ACM heart is at high risk of sudden cardiac death before cardiac remodeling occurs because of mistargeted ion channels and altered Ca2+ handling. However, the results of pathogenic PKP2 variants on myocyte contraction in ACM pathogenesis remain unknown.
Methods:
We studied the outcomes of a human truncating variant of PKP2 on myocyte contraction using a novel knock-in mouse model with insertion of thymidine in exon 5 of Pkp2, which mimics a familial case of ACM (PKP2-L404fsX5). We used serial echocardiography, electrocardiography, blood pressure measurements, histology, cardiomyocyte contraction, intracellular calcium measurements, and gene and protein expression studies.
Results:
Serial echocardiography of Pkp2 heterozygous (Pkp2-Het) mice revealed progressive failure of the right ventricle (RV) in animals older than 3 months. By contrast, left ventricular function remained normal. ECGs of 6-month-old anesthetized Pkp2-Het mice showed normal baseline heart rates and QRS complexes. Cardiac responses to β-adrenergic agonist isoproterenol (2 mg/kg) plus caffeine (120 mg/kg) were also normal. However, adrenergic stimulation enhanced the susceptibility of Pkp2-Het hearts to tachyarrhythmia and sudden cardiac death. Histological staining showed no significant fibrosis or adipocyte infiltration in the RVs and left ventricles of 6- and 12-month-old Pkp2-Het hearts. Contractility assessment of isolated myocytes demonstrated progressively reduced Pkp2-Het RV cardiomyocyte function consistent with RV failure measured by echocardiography. However, aging Pkp2-Het and control RV myocytes loaded with intracellular Ca2+ indicator Fura-2 showed comparable Ca2+ transients. Western blotting of Pkp2-RV homogenates revealed a 40% decrease in actin, whereas actin immunoprecipitation followed by a 2,4-dinitrophenylhydrazine staining showed doubled oxidation level. This correlated with a 39% increase in troponin-I phosphorylation. In contrast, Pkp2-Het left ventricular myocytes had normal contraction, actin expression and oxidation, and troponin-I phosphorylation. Last, Western blotting of cardiac biopsies revealed that actin expression was 40% decreased in RVs of patients with end-stage ACM.
Conclusions:
During the early concealed phase of ACM, reduced actin expression drives loss of RV myocyte contraction, contributing to progressive RV dysfunction.
Insights
Pathogenic variants in PKP2 gene cause arrhythmogenic cardiomyopathy (ACM). Reduced actin expression in right ventricular myocytes leads to impaired contraction and dysfunction during early ACM stages.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Diseases
Background:
- Arrhythmogenic cardiomyopathy (ACM) is an inherited desmosomal disorder.
- PKP2 variants are the most common cause of mutation-positive ACM.
- Early ACM phases risk sudden cardiac death due to ion channel mistargeting and altered calcium handling.
Purpose of the Study:
- Investigate the impact of a PKP2 truncating variant on myocyte contraction in ACM.
- Utilize a novel PKP2 knock-in mouse model mimicking familial ACM.
- Elucidate the role of PKP2 variants in ACM pathogenesis.
Main Methods:
- Developed a PKP2 knock-in mouse model (PKP2-L404fsX5).
- Conducted serial echocardiography, ECG, and blood pressure measurements.
- Performed histology, cardiomyocyte contractility, intracellular calcium, and gene/protein expression analyses.
Main Results:
- Pkp2-Het mice showed progressive right ventricular (RV) failure after 3 months, with normal left ventricular function.
- RV cardiomyocyte contractility was reduced in Pkp2-Het mice, correlating with RV dysfunction.
- Decreased RV actin expression and increased troponin-I phosphorylation were observed in Pkp2-Het mice and ACM patients.
Conclusions:
- Reduced actin expression in RV myocytes contributes to impaired contraction in early ACM.
- This actin dysregulation is a key mechanism driving progressive RV dysfunction in ACM.
- Findings highlight a novel pathway in ACM pathogenesis linked to PKP2 mutations.
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