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Cell fusion and intramembrane particle distribution in polyethylene glycol-resistant cells
Abstract:
The distribution of intramembrane particles (IMP) as revealed by freeze-fracture electron microscopy has been analyzed following treatment of mouse L cells and fusion-deficient L cell derivatives with several concentrations of polyethylene glycol (PEG). In cell cultures treated with concentrations of PEG below the critical level for fusion, no aggregation of IMP was observed. When confluent cultures of the parental cells are treated with 50% PEG, greater than 90% of the cells fuse, and cold-induced IMP aggregation is extensive. In contrast, identical treatment of fusion-deficient cell lines shows neither extensive fusion nor IMP redistribution. At higher concentrations of PEG, however, the PEG-resistant cells fuse extensively and IMP aggregation is evident. Thus the decreased ability of the fusion-deficient cells to fuse after treatment with PEG is correlated with the failure of IMP aggregation to occur. A technique for quantifying particle distribution was developed that is practical for the accurate analysis of a large number of micrographs. The variance from the mean number of particles in randomly chosen areas of fixed size was calculated for each cell line at each concentration of PEG. Statistical analysis confirms visual observation of highly aggregated IMP, and allows detection of low levels of aggregation in parental cells that were less extensively fused by exposure to lower concentrations of PEG. When low levels of fusion were induced in fusion-deficient cells, however, no IMP aggregation could be detected.
Insights
Polyethylene glycol (PEG) treatment induces cell fusion by causing intramembrane particle (IMP) aggregation. Fusion-deficient cells fail to aggregate IMP, highlighting IMP
Area of Science:
- Cell Biology
- Biophysics
Background:
- Intramembrane particles (IMPs) are crucial components of cell membranes.
- Polyethylene glycol (PEG) is a chemical agent used to induce cell fusion.
Purpose of the Study:
- To investigate the relationship between cell fusion and intramembrane particle (IMP) distribution.
- To analyze the effect of polyethylene glycol (PEG) on IMP aggregation in mouse L cells and fusion-deficient variants.
Main Methods:
- Freeze-fracture electron microscopy was used to visualize IMP distribution.
- Mouse L cells and fusion-deficient cell lines were treated with varying concentrations of PEG.
- A quantitative method was developed to analyze IMP distribution from micrographs.
Main Results:
- PEG treatment induced extensive IMP aggregation in parental cells that underwent fusion.
- Fusion-deficient cell lines showed minimal IMP aggregation, even at higher PEG concentrations.
- A quantitative analysis confirmed a strong correlation between the extent of cell fusion and IMP aggregation.
Conclusions:
- Cell fusion induced by PEG is directly correlated with the aggregation of intramembrane particles.
- The ability of IMP aggregation to occur is essential for effective cell fusion.
- The developed quantification technique provides a reliable method for analyzing IMP distribution.