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Subcellular distribution of rhodamine-actin microinjected into living fibroblastic cells
Abstract:
The time course and pattern of incorporation of rhodamine-labeled actin microinjected into cultured fibroblastic cells were examined by fluorescence microscopy. Following microinjection, the fluorescent probe was incorporated rapidly into ruffling membranes, and within 5 min faintly fluorescent stress fibers were observed. Levels of fluorescence in ruffling membranes then tended to remain constant while fluorescence of the stress fibers continued to increase until approximately 20-min postinjection. Small, discrete regions of some microinjected cells displayed high levels of fluorescence that appeared initially approximately 5-10 min postinjection. I observed these small areas of intense fluorescence frequently near the cell periphery, which corresponded to focal contacts when examined with interference reflection optics. The results of this study show that a relationship exists between patterns of fluorescent actin incorporation in these cells and cellular areas or structures presumed to play a role in cell movement. These findings suggest that actin within stress fibers and the microfilament network of ruffling membranes undergoes a rapid turnover that may relate directly to the motility of the cell.
Insights
Actin rapidly incorporates into cellular structures involved in movement, like ruffling membranes and stress fibers. This rapid actin turnover suggests a direct link to cell motility.
Area of Science:
- Cell Biology
- Cytoskeleton Dynamics
- Molecular Motors
Background:
- Actin dynamics are crucial for cellular functions.
- Understanding actin turnover in motile cells is essential.
Purpose of the Study:
- To investigate the time course and pattern of rhodamine-labeled actin incorporation in cultured fibroblastic cells.
- To correlate actin incorporation patterns with cellular structures involved in cell movement.
Main Methods:
- Microinjection of rhodamine-labeled actin into cultured fibroblastic cells.
- Fluorescence microscopy to observe actin incorporation.
- Interference reflection microscopy to identify focal contacts.
Main Results:
- Rapid incorporation of fluorescent actin into ruffling membranes within minutes.
- Faintly fluorescent stress fibers observed within 5 minutes, increasing in intensity over 20 minutes.
- High fluorescence localized to discrete regions near cell periphery, corresponding to focal contacts.
Conclusions:
- A relationship exists between fluorescent actin incorporation patterns and cellular structures involved in cell movement.
- Actin in stress fibers and ruffling membranes exhibits rapid turnover.
- Rapid actin turnover may be directly related to cell motility.