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Morphologic and temporal analysis of vascular smooth muscle cell apoptosis induced by c-myc and E1A
R T Allen1, W J Hunter, D K Agrawal
1Department of Internal Medicine, Creighton University School of Medicine, Omaha, Nebraska 68178, USA.
Abstract:
Apoptosis is a physiologic form of cell death present in many disease conditions. When the balance of mitosis versus apoptosis is altered, tumor-like growth or degeneration of tissues may ensue. This appears to occur in several diseases, including those of the cardiovascular system, where apoptosis plays a key role in atherosclerosis and restenosis following angioplasty. Since c-myc is upregulated in the pathogenesis of these diseases, we chose to study the sequential morphologic features of programmed cell death in vascular smooth muscle cells induced by c-myc and by the adenovirus early gene E1A. Morphology and timed events in apoptotic cell cultures were analyzed by scanning electron microscopy, transmission electron microscopy, and time-lapse videomicroscopy. We observed that both c-myc- and E1A-induced apoptosis (in serum-free medium) resulted in numerous, tightly packed clusters of apoptotic blebs, as well as in one or two asymmetrically larger blebs. Transmission electron miscroscopy analysis revealed the larger blebs contained mostly nuclear chromatin, whereas the many smaller fragments often had little or no chromatin. Time-lapse studies showed that apoptosis was induced at a slower rate in cells stably transfected with c-myc versus those stably transfected with E1A. The early changes of apoptosis, including cell shrinkage and intense blebbing, occurred in under 5 min in both cells. Slight alterations such as cell size and further rounding occurred up to 8 h following the initial changes of apoptosis. Rather than being a part of the apoptotic response, release from the culture floor almost entirely resulted from movement of the culture flask. These studies provide a framework of timed morphologic events for future mechanistic investigation into the key aspects of myc- and E1A-induced apoptosis in vascular smooth muscle.
Insights
Programmed cell death (apoptosis) in vascular smooth muscle cells was studied using c-myc and E1A. Both induced blebbing and shrinkage, with E1A-induced apoptosis occurring faster than c-myc-induced apoptosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cardiovascular Research
Background:
- Apoptosis, a programmed cell death, is crucial in disease pathogenesis.
- Imbalances in apoptosis contribute to cardiovascular diseases like atherosclerosis and restenosis.
- Upregulation of c-myc is implicated in these disease processes.
Purpose of the Study:
- To investigate the sequential morphologic features of programmed cell death in vascular smooth muscle cells.
- To compare apoptosis induced by c-myc and adenovirus E1A.
- To establish a temporal framework for apoptosis mechanisms in vascular cells.
Main Methods:
- Scanning electron microscopy (SEM)
- Transmission electron microscopy (TEM)
- Time-lapse videomicroscopy
- Analysis of vascular smooth muscle cells induced by c-myc and E1A.
Main Results:
- Both c-myc and E1A induced apoptosis characterized by blebbing and cell shrinkage within 5 minutes.
- Apoptosis occurred at a slower rate in c-myc-transfected cells compared to E1A-transfected cells.
- TEM revealed larger blebs containing nuclear chromatin and smaller fragments with minimal chromatin.
Conclusions:
- Morphologic changes and timing of apoptosis induced by c-myc and E1A in vascular smooth muscle cells were characterized.
- These findings provide a basis for future mechanistic studies on myc- and E1A-induced apoptosis.
- Understanding these processes is key to investigating cardiovascular diseases involving apoptosis.