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Novel junctophilin-2 mutation A405S is associated with basal septal hypertrophy and diastolic dysfunction
Ann P Quick1, Andrew P Landstrom2, Qiongling Wang1
1Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX, USA; Cardiovascular Research Institute, Baylor College of Medicine, Houston, TX, USA.
Insights
A novel mutation in the JPH2 gene (junctophilin 2) is linked to hypertrophic cardiomyopathy (HCM). A mouse model confirmed this JPH2 defect causes HCM, revealing new insights into cardiac disease.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic basis of cardiac diseases
Background:
- Hypertrophic cardiomyopathy (HCM) is a primary cause of sudden cardiac death in young individuals, characterized by left ventricular hypertrophy.
- Calcium (Ca2+) handling protein abnormalities are implicated in HCM pathogenesis.
- Junctophilin 2 (JPH2), encoded by the JPH2 gene, is crucial for excitation-contraction coupling within the junctional membrane complex.
Purpose of the Study:
- To investigate if a newly identified JPH2 mutation in HCM patients is causally linked to the disease.
- To determine if this JPH2 mutation alters intracellular Ca2+ signaling in a manner that promotes cardiac hypertrophy.
- To validate findings using a transgenic pseudo-knock-in (PKI) mouse model.
Main Methods:
- Genetic screening of JPH2 coding exons in a large cohort of HCM patients.
- Generation and analysis of PKI mice carrying a novel JPH2 variant (A399S).
- Comprehensive phenotyping of PKI mice, including echocardiography, cardiac MRI, hemodynamic analysis, and histology.
Main Results:
- A novel JPH2 mutation, A405S, was identified in an HCM patient lacking mutations in known HCM-associated genes.
- PKI mice with the analogous JPH2 mutation (A399S) exhibited basal hypertrophy, confirmed by advanced echocardiography and cardiac MRI.
- Histological examination of PKI mice revealed cardiomyocyte hypertrophy and disarray, consistent with HCM pathology.
Conclusions:
- The JPH2 A405S variant is a novel mutation associated with HCM.
- This study provides the first evidence of a causal link between JPH2 defects and HCM using a mouse model.
- Novel imaging techniques identified subvalvular septal hypertrophy in the mouse model, mirroring findings in the human carrier.
Background:
Hypertrophic cardiomyopathy (HCM), defined as asymmetric left ventricular hypertrophy, is a leading cause of cardiac death in the young. Perturbations in calcium (Ca2+) handling proteins have been implicated in the pathogenesis of HCM. JPH2-encoded junctophilin 2 is a major component of the junctional membrane complex, the subcellular microdomain involved in excitation-contraction coupling. We hypothesized that a novel JPH2 mutation identified in patients with HCM is causally linked to HCM, and alters intracellular Ca2+ signaling in a pro-hypertrophic manner.
Objectives:
To determine using a transgenic mouse model whether a JPH2 mutation found in a HCM patient is responsible for disease development.
Methods:
Genetic interrogation of a large cohort of HCM cases was conducted for all coding exons of JPH2. Pseudo-knock-in (PKI) mice containing a novel JPH2 variant were subjected to echocardiography, cardiac MRI, hemodynamic analysis, and histology.
Results:
A novel JPH2 mutation, A405S, was identified in a genotype-negative proband with significant basal septal hypertrophy. Although initially underappreciated by traditional echocardiographic imaging, PKI mice with this JPH2 mutation (residue A399S in mice) were found to exhibit similar basal hypertrophy using a newly developed echo imaging plane, and this was confirmed using cardiac MRI. Histological analysis demonstrated cardiomyocyte hypertrophy and disarray consistent with HCM.
Conclusions:
Variant A405S is a novel HCM-associated mutation in JPH2 found in a proband negative for mutations in the canonical HCM-associated genes. Studies in the analogous mouse model demonstrated for the first time a causal link between a JPH2 defect and HCM. Moreover, novel imaging approaches identified subvalvular septal hypertrophy, specific findings also reported in the human JPH2 mutation carrier.
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