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Published on: November 17, 2018
Reduction of protein synthesis and statin-induced cardiomyocyte cell death
Simon W Rabkin1, Parth Lodha, Jennifer Y Kong
1University of British Columbia, Level 9, 2775 Laurel St, Vancouver, BC, Canada V5Z 1M9. rabkin@interchange.ubc.ca
Abstract:
The objective of this study was to determine whether an HMG Co A reductase inhibitor (statin) reduces protein synthesis in cardiomyocytes and whether this action maybe an underlying mechanism for statin-induced cell death. Cardiomyocytes from embryonic chick heart were maintained in culture. Cells exposed to lovastatin for 4 h showed a concentration dependent reduction in protein synthesis as assessed by [3H] leucine incorporation and [35S] methionine incorporation. Compared to control, lovastatin 100 microM, which produced a 25% increase in cell death, induced a three-fold reduction in methionine incorporation. [35S] methionine autoradiography showed little (new) protein synthesis at concentrations of lovastatin of 70 microM or higher; an effect that was not limited to specific proteins. Cardiomyocytes treated with lovastatin showed morphologic changes in the nucleoli consistent with insufficient protein synthesis. These cardiomyocytes manifested cell death under conditions of reduced protein synthesis. Interruption of protein synthesis with cycloheximide, a ribosomal RNA transcription inhibitor or reduction in protein substrate availability by lowering the media concentration of fetal calf serum was associated with a concentration-dependent reductions in cell viability. Importantly, stimulation of protein synthesis by higher concentrations of fetal calf serum limited lovastatin-induced cell death. These data suggest that statin-induced inhibition of protein synthesis is an underlying mechanism for statin-induced cell death.
Insights
Statins, like lovastatin, significantly reduce protein synthesis in heart cells. This inhibition of protein synthesis is a key mechanism behind statin-induced cell death in cardiomyocytes.
Area of Science:
- Cardiology
- Molecular Biology
- Pharmacology
Background:
- Cardiomyocytes are vital heart cells.
- Statins are commonly prescribed cholesterol-lowering drugs.
- Statin-induced cell death is a potential adverse effect.
Purpose of the Study:
- To investigate if statins inhibit protein synthesis in cardiomyocytes.
- To determine if reduced protein synthesis mediates statin-induced cardiomyocyte death.
Main Methods:
- Primary cardiomyocyte cultures from embryonic chicks.
- Exposure to lovastatin at varying concentrations.
- Measurement of protein synthesis via [3H] leucine and [35S] methionine incorporation.
- Assessment of cell viability and morphologic changes.
Main Results:
- Lovastatin caused a dose-dependent decrease in protein synthesis.
- Significant reduction in protein synthesis correlated with increased cell death.
- Morphological changes in nucleoli indicated impaired protein synthesis.
- Interfering with protein synthesis pathways mimicked statin effects.
Conclusions:
- Statin-induced inhibition of protein synthesis is a likely mechanism for cardiomyocyte cell death.
- Maintaining protein synthesis can protect cardiomyocytes from statin toxicity.
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