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Published on: December 21, 2019
Cleavage of serum response factor mediated by enteroviral protease 2A contributes to impaired cardiac function
Jerry Wong1, Jingchun Zhang, Bobby Yanagawa
1James Hogg iCAPTURE Centre, Providence Heart + Lung Institute, St Paul's Hospital, University of British Columbia, 1081 Burrard Street, Vancouver, BC V6Z 1Y, Canada.
Insights
Enteroviral infection cleaves cardiac Serum Response Factor (SRF), impairing heart function and leading to dilated cardiomyopathy (DCM). This viral protease action disrupts gene regulation, offering potential therapeutic targets for heart damage.
Area of Science:
- Cardiology
- Virology
- Molecular Biology
Background:
- Enteroviral infections are a significant cause of dilated cardiomyopathy (DCM), a leading cause of cardiovascular mortality.
- The precise mechanisms linking enterovirus infection to DCM pathogenesis remain incompletely understood.
- Serum Response Factor (SRF) is a crucial cardiac transcription factor regulating genes essential for heart contractility and function; its cardiac knockout leads to DCM.
Purpose of the Study:
- To elucidate the role of SRF in enterovirus-induced cardiac dysfunction and its progression to DCM.
- To investigate the molecular mechanisms by which enteroviruses affect SRF activity in the heart.
Main Methods:
- Enteroviral infection of mouse hearts and cultured cardiomyocytes.
- Analysis of SRF cleavage using antibody epitope mapping and site-directed mutagenesis.
- Assessment of cardiac function and cardiac-specific gene expression.
- Investigation of SRF cleavage products' transcriptional activity.
Main Results:
- Enteroviral infection induces cleavage of SRF in cardiac cells.
- SRF cleavage correlates with impaired cardiac function and downregulation of cardiac-specific genes.
- Viral protease 2A is responsible for cleaving SRF within its transactivation domain.
- Cleavage disrupts SRF's DNA-binding and transactivation capabilities, and the N-terminal fragment acts as a dominant-negative inhibitor.
Conclusions:
- Enteroviral infection impairs cardiac function via cleavage of SRF by viral protease 2A.
- This cleavage disrupts essential cardiac gene regulation, contributing to DCM development.
- Targeting SRF cleavage or its fragments may offer a novel therapeutic strategy for viral myocarditis and DCM.
Abstract:
Enteroviral infection can lead to dilated cardiomyopathy (DCM), which is a major cause of cardiovascular mortality worldwide. However, the pathogenetic mechanisms have not been fully elucidated. Serum response factor (SRF) is a cardiac-enriched transcription regulator controlling the expression of a variety of target genes, including those involved in the contractile apparatus and immediate early response, as well as microRNAs that silence the expression of cardiac regulatory factors. Knockout of SRF in the heart results in downregulation of cardiac contractile gene expression and development of DCM. The goal of this study is to understand the role of SRF in enterovirus-induced cardiac dysfunction and progression to DCM. Here we report that SRF is cleaved following enteroviral infection of mouse heart and cultured cardiomyocytes. This cleavage is accompanied by impaired cardiac function and downregulation of cardiac-specific contractile and regulatory genes. Further investigation by antibody epitope mapping and site-directed mutagenesis demonstrates that SRF cleavage occurs at the region of its transactivation domain through the action of virus-encoded protease 2A. Moreover, we demonstrate that cleavage of SRF dissociates its transactivation domain from DNA-binding domain, resulting in the disruption of SRF-mediated gene transactivation. In addition to loss of functional SRF, finally we report that the N-terminal fragment of SRF cleavage products can also act as a dominant-negative transcription factor, which likely competes with the native SRF for DNA binding. Our results suggest a mechanism by which virus infection impairs heart function and may offer a new therapeutic strategy to ameliorate myocardial damage and progression to DCM.
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