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Published on: March 3, 2021
PANoptosis is a prominent feature of desmoplakin cardiomyopathy
Melis Olcum1, Leila Rouhi1, Siyang Fan2
1Center for Cardiovascular Genetics, Institute of Molecular Medicine and Department of Medicine, University of Texas Health Sciences Center at Houston, Houston, TX 77030, USA.
Introduction:
Arrhythmogenic cardiomyopathy (ACM) is hereditary cardiomyopathy caused by pathogenic variants (mutations) in genes encoding the intercalated disc (ID), particularly desmosome proteins. ACM caused by mutations in the DSP gene encoding desmoplakin (DSP) is characterized by the prominence of cell death, myocardial fibrosis, and inflammation, and is referred to as desmoplakin cardiomyopathy.
Aim:
The aim of this article was to gain insight into the pathogenesis of DSP cardiomyopathy.
Methods And Results:
The Dsp gene was exclusively deleted in cardiac myocytes using tamoxifen-inducible MerCreMer (Myh6-Mcm Tam) and floxed Dsp (Dsp F/F) mice (Myh6-Mcm Tam:Dsp F/F). Recombination was induced upon subcutaneous injection of tamoxifen (30 mg/kg/d) for 5 days starting post-natal day 14. Survival was analyzed by Kaplan-Meier plots, cardiac function by echocardiography, arrhythmias by rhythm monitoring, and gene expression by RNA-Seq, immunoblotting, and immunofluorescence techniques. Cell death was analyzed by the TUNEL assay and the expression levels of specific markers were by RT-PCR and immunoblotting. Myocardial fibrosis was assessed by picrosirius red staining of the myocardial sections, RT-PCR, and immunoblotting. The Myh6-Mcm Tam: Dsp F/F mice showed extensive molecular remodeling of the IDs and the differential expression of ~10,000 genes, which predicted activation of KDM5A, IRFs, and NFκB and suppression of PPARGC1A and RB1, among others in the DSP-deficient myocytes. Gene set enrichment analysis predicted activation of the TNFα/NFκB pathway, inflammation, cell death programs, and fibrosis. Analysis of cell death markers indicated PANoptosis, comprised of apoptosis (increased CASP3, CASP8, BAD and reduced BCL2), necroptosis (increased RIPK1, RIPK3, and MLKL), and pyroptosis (increased GSDMD and ASC or PYCARD) in the DSP-deficient myocytes. Transcript levels of the pro-inflammatory and pro-fibrotic genes were increased and myocardial fibrosis comprised ~25% of the myocardium in the DSP-deficient hearts. The Myh6-Mcm Tam:Dsp F/F mice showed severe cardiac systolic dysfunction and ventricular arrhythmias, and died prematurely with a median survival rate of ~2 months.
Conclusion:
The findings identify PANoptosis as a prominent phenotypic feature of DSP cardiomyopathy and set the stage for delineating the specific molecular mechanisms involved in its pathogenesis. The model also provides the opportunity to test the effects of pharmacological and genetic interventions on myocardial fibrosis and cell death.
Insights
Desmoplakin cardiomyopathy, a genetic heart condition, is characterized by PANoptosis, a form of cell death involving apoptosis, necroptosis, and pyroptosis. This study reveals PANoptosis as a key feature, paving the way for new therapeutic strategies.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Arrhythmogenic cardiomyopathy (ACM) is a hereditary heart muscle disease linked to genetic defects in intercalated disc proteins.
- Desmoplakin cardiomyopathy, caused by mutations in the DSP gene, exhibits significant cell death, fibrosis, and inflammation.
Purpose of the Study:
- To investigate the underlying mechanisms of desmoplakin cardiomyopathy pathogenesis.
- To characterize the cellular and molecular changes in a mouse model with cardiac-specific desmoplakin deletion.
Main Methods:
- Generated a tamoxifen-inducible cardiac-specific desmoplakin knockout mouse model (Myh6-Mcm:DspF/F).
- Analyzed survival, cardiac function, arrhythmias, gene expression, cell death (apoptosis, necroptosis, pyroptosis), and myocardial fibrosis.
- Utilized techniques including RNA-Seq, immunoblotting, immunofluorescence, TUNEL assay, and picrosirius red staining.
Main Results:
- DSP-deficient myocytes displayed extensive intercalated disc remodeling and differential gene expression, activating pathways like TNFα/NFκB and suppressing others.
- PANoptosis, a combined form of apoptosis, necroptosis, and pyroptosis, was identified as a major cell death mechanism.
- Significant increases in pro-inflammatory and pro-fibrotic gene expression were observed, with fibrosis affecting approximately 25% of the myocardium.
- Mice exhibited severe cardiac dysfunction, ventricular arrhythmias, and premature death (median survival ~2 months).
Conclusions:
- PANoptosis is a defining characteristic of desmoplakin cardiomyopathy.
- This study provides a valuable model for exploring DSP cardiomyopathy mechanisms and testing interventions for fibrosis and cell death.
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