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Murine Isolated Heart Model of Myocardial Stunning Associated with Cardioplegic Arrest
Published on: August 6, 2015
Cardiomyocyte β-arrestins mediate inflammation and cGAS-STING activation in CVB3 viral myocarditis
Emilio Y Lucero1, Haoran Jiang1, Vincent D'Anniballe1
1Department of Medicine, Duke University Medical Center, Durham, North Carolina, United States.
Insights
Beta-arrestins (βarrs) are crucial for the heart's immune response to viral myocarditis. Deleting βarrs in mice reduces cardiac inflammation and apoptosis, highlighting their role in viral heart disease.
Area of Science:
- Cardiology
- Immunology
- Molecular Biology
Background:
- Viral myocarditis is a leading cause of sudden cardiac death and dilated cardiomyopathy.
- Effective treatments are lacking due to poor understanding of molecular mechanisms.
- Beta-arrestins (βarrs) are key regulators of G protein-coupled receptor signaling.
Purpose of the Study:
- To investigate the role of βarrs in acute viral myocarditis.
- To determine if βarrs mediate cardiac inflammation and immune cell infiltration.
- To elucidate the mechanism by which βarrs influence the cardiac response to viral infection.
Main Methods:
- Utilized global βarr1 and βarr2 knockout (KO) mice infected with Coxsackievirus (CVB3).
- Assessed immune cell infiltration, apoptosis, and immune cell expansion in lymphoid organs.
- Examined cardiomyocyte-specific βarr1 and βarr2 dual deletion.
- Investigated the cGAS-STING pathway activation in cardiomyocytes lacking βarrs.
Main Results:
- βarr KO mice showed suppressed immune cell recruitment (NK cells, monocytes, macrophages, dendritic cells, T cells) and reduced cardiac apoptosis.
- Immune cell expansion in secondary lymphoid organs was impaired in βarr KO mice.
- Cardiomyocyte-specific βarr deletion mimicked the attenuated inflammatory response seen in global KO mice.
- Cardiomyocytes lacking βarrs exhibited defective cGAS-STING pathway activation and inhibited IFNβ production.
Conclusions:
- βarrs are critical mediators of the inflammatory response in the heart and lymphoid organs during viral myocarditis.
- Cardiomyocyte βarrs play a fundamental role in the cardiac inflammatory response to CVB3 infection.
- Targeting βarrs may offer a therapeutic strategy for viral myocarditis.
Abstract:
Viral myocarditis is a major cause of sudden cardiac death and can lead to dilated cardiomyopathy in adults. However, effective treatments remain elusive due to an incomplete understanding of its molecular drivers. Here, we investigate the role of β-arrestins (βarrs), scaffolding proteins that regulate GPCR signaling, in acute viral myocarditis. Using global βarr1 and βarr2 knockout (KO) mice, we assessed immune cell infiltration and apoptosis as markers of cardiac inflammation under Coxsackievirus (CVB3) infection. CVB3-infected βarr1 and 2 KO mice exhibited suppressed recruitment of NK cells, monocytes, macrophages, dendritic cells, and T cells over a broad range of viral titers at 7 days postinfection along with reduced cardiac apoptosis. At 4 days postinfection, immune cell expansion in secondary lymphoid organs, including B cells, CD8+ T cells, CD64+ myeloid progenitors, and monocyte/macrophages was also impaired in βarr KO mice. Importantly, cardiomyocyte-specific βarr1 and 2 dual deletion mirrored the attenuated inflammatory response and apoptosis observed in global βarr KO mice. Mechanistically, cardiomyocytes lacking βarr1 or βarr2 displayed defective cGAS-STING pathway activation, with impaired STING, TBK1, and IRF3 phosphorylation and inhibited IFNβ production at 24 h post-CVB3 infection. These data highlight βarrs as critical mediators of the inflammatory response in the heart and secondary lymphoid organs during viral myocarditis and demonstrate that cardiomyocyte βarrs plays a fundamental role in the inflammatory response to CVB3 viral myocarditis.NEW & NOTEWORTHY Viral myocarditis can lead to dilated cardiomyopathy in adults, yet the molecular mechanisms that induce cardiac inflammation in viral myocarditis remain unclear. β-Arrestins are scaffolding proteins that mediate intracellular signaling during viral infection. We demonstrated that cardiomyocyte β-arrestins are necessary for immune cell recruitment, induction of cardiac apoptosis, and cGAS-STING pathway activation during acute coxsackievirus B3 infection. Targeting β-arrestins appears to decrease the inflammatory response in acute viral myocarditis.
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