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Studying the Stoichiometry of Epidermal Growth Factor Receptor in Intact Cells using Correlative Microscopy
Published on: September 11, 2015
Death receptor 5 contributes to cardiomyocyte hypertrophy through epidermal growth factor receptor transactivation
Miles A Tanner1, Toby P Thomas1, Laurel A Grisanti1
1Department of Biomedical Sciences, College of Veterinary Medicine, University of Missouri, Columbia, MO, USA.
Abstract:
Cardiomyocyte survival and death contributes to many cardiac diseases. A common mechanism of cardiomyocyte death is through apoptosis however, numerous death receptors (DR) have been virtually unstudied in the context of cardiovascular disease. Previous studies have identified TNF-related apoptosis inducing ligand (TRAIL) and its receptor, DR5, as being altered in a chronic catecholamine administration model of heart failure, and suggest a role of non-canonical signaling in cardiomyocytes. Furthermore, multiple clinical studies have identified TRAIL or DR5 as biomarkers in the prediction of severity and mortality following myocardial infarction and in heart failure development risk suggesting a role of DR5 signaling in the heart. While TRAIL/DR5 have been extensively studied as a potential cancer therapeutic due to their ability to selectively activate apoptosis in cancer cells, TRAIL and DR5 are highly expressed in the heart where their function is uncharacterized. However, many non-transformed cell types are resistant to TRAIL-induced apoptosis suggesting non-canonical functions in non-cancerous cell types. Our goal was to determine the role of DR5 in the heart with the hypothesis that DR5 does not induce cardiomyocyte apoptosis but initiates non-canonical signaling to promote cardiomyocyte growth and survival. Histological analysis of hearts from mice treated with a DR5 agonists showed increased hypertrophy with no differences in cardiomyocyte death, fibrosis or function. Mechanistic studies in the heart and isolated cardiomyocytes identified ERK1/2 activation with DR5 agonist treatment which contributed to hypertrophy. Furthermore, epidermal growth factor receptor (EGFR) was activated following DR5 agonist treatment through activation of MMP and HB-EGFR cleavage and specific inhibitors of MMP and EGFR prevented DR5-mediated ERK1/2 signaling and hypertrophy. Taken together, these studies identify a previously unidentified role for DR5 in the heart, which does not promote apoptosis but acts through non-canonical MMP-EGFR-ERK1/2 signaling mechanisms to contribute to cardiomyocyte hypertrophy.
Insights
Death receptor 5 (DR5) in the heart does not cause apoptosis but promotes cardiomyocyte growth. DR5 initiates non-canonical signaling pathways, including MMP-EGFR-ERK1/2, leading to cardiac hypertrophy and survival.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cell Death Signaling
Background:
- Cardiomyocyte survival and death are critical in cardiac diseases, with apoptosis being a common mechanism.
- Numerous death receptors (DRs), including TNF-related apoptosis inducing ligand (TRAIL) and its receptor DR5, are implicated in cardiovascular disease.
- DR5 is identified as a biomarker for myocardial infarction severity and heart failure risk, suggesting a role in cardiac function.
Purpose of the Study:
- To investigate the role of DR5 in the heart.
- To test the hypothesis that DR5 does not induce cardiomyocyte apoptosis but initiates non-canonical signaling for growth and survival.
Main Methods:
- Histological analysis of mouse hearts treated with a DR5 agonist.
- Mechanistic studies in vivo and in isolated cardiomyocytes.
- Assessment of ERK1/2, MMP, and EGFR activation.
- Use of specific inhibitors for MMP and EGFR.
Main Results:
- DR5 agonist treatment led to increased cardiac hypertrophy without affecting cardiomyocyte death, fibrosis, or function.
- DR5 activation initiated non-canonical signaling, including ERK1/2 activation, which mediated hypertrophy.
- EGFR activation was downstream of MMP and HB-EGFR cleavage following DR5 agonist treatment.
- Inhibitors of MMP and EGFR blocked DR5-mediated ERK1/2 signaling and hypertrophy.
Conclusions:
- DR5 plays a previously unrecognized role in the heart.
- DR5 signaling in cardiomyocytes does not promote apoptosis.
- DR5 acts through non-canonical MMP-EGFR-ERK1/2 pathways to promote cardiomyocyte hypertrophy and survival.
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