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Dominant-negative effect on adhesion by myelin Po protein truncated in its cytoplasmic domain
1Department of Biological Sciences, Hunter College of the City University of New York, New York 10021, USA.
Abstract:
The myelin Po protein is believed to hold myelin together via interactions of both its extracellular and cytoplasmic domains. We have already shown that the extracellular domains of Po can interact in a homophilic manner (Filbin, M.T., F.S. Walsh, B.D. Trapp, J.A. Pizzey, and G.I. Tennekoon. 1990. Nature (Lond.). 344:871-872). In addition, we have shown that for this homophilic adhesion to take place, the cytoplasmic domain of Po must be intact and most likely interacting with the cytoskeleton; Po proteins truncated in their cytoplasmic domains are not adhesive (Wong, M.H., and M.T. Filbin, 1994. J. Cell Biol. 126:1089-1097). To determine if the presence of these truncated forms of Po could have an effect on the functioning of the full-length Po, we coexpressed both molecules in CHO cells. The adhesiveness of CHO cells expressing both full-length Po and truncated Po was then compared to cells expressing only full-length Po. In these coexpressors, both the full-length and the truncated Po proteins were glycosylated. They reached the surface of the cell in approximately equal amounts as shown by an ELISA and surface labeling, followed by immunoprecipitation. Furthermore, the amount of full-length Po at the cell surface was equivalent to other cell lines expressing only full-length Po that we had already shown to be adhesive. Therefore, there should be sufficient levels of full-length Po at the surface of these coexpressors to measure adhesion of Po. However, as assessed by an aggregation assay, the coexpressors were not adhesive. By 60 min they had not formed large aggregates and were indistinguishable from the control transfected cells not expressing Po. In contrast, in the same time, the cells expressing only the full-length Po had formed large aggregates. This indicates that the truncated forms of Po have a dominant-negative effect on the adhesiveness of the full-length Po. Furthermore, from cross-linking studies, full-length Po, when expressed alone but not when coexpressed with truncated Po, appears to cluster in the membrane. We suggest that truncated Po exerts its dominant-negative effect by preventing clustering of full-length Po. We also show that colchicine, which disrupts microtubules, prevents adhesion of cells expressing only the full-length Po. This strengthens our suggestion that an interaction of Po with the cytoskeleton, either directly or indirectly, is required for adhesion to take place.
Insights
Truncated myelin Po proteins inhibit the adhesive function of full-length Po, suggesting a dominant-negative effect. This inhibition occurs by preventing the clustering of full-length Po, which is crucial for myelin adhesion.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- The myelin Po protein is essential for maintaining myelin sheath integrity through interactions of its extracellular and cytoplasmic domains.
- Previous research established homophilic interactions of extracellular Po domains and the necessity of intact cytoplasmic domains for adhesion.
- Truncated Po proteins lacking functional cytoplasmic domains are non-adhesive.
Purpose of the Study:
- To investigate the impact of coexpressing truncated Po proteins on the adhesive function of full-length Po.
- To determine if truncated Po forms interfere with the cell surface expression and adhesive capabilities of full-length Po.
Main Methods:
- Coexpression of full-length and truncated Po proteins in Chinese Hamster Ovary (CHO) cells.
- Assessing cell surface expression using ELISA and surface labeling followed by immunoprecipitation.
- Evaluating cell adhesion through aggregation assays.
- Investigating protein interactions using cross-linking studies.
- Examining the role of microtubules by using colchicine.
Main Results:
- Coexpression of full-length and truncated Po resulted in non-adhesive CHO cells, unlike cells expressing only full-length Po.
- Both full-length and truncated Po proteins were correctly glycosylated and reached the cell surface in similar amounts.
- Truncated Po prevented the clustering of full-length Po in the cell membrane, a process observed when full-length Po was expressed alone.
- Colchicine treatment disrupted microtubule assembly and inhibited adhesion of cells expressing only full-length Po.
Conclusions:
- Truncated myelin Po proteins exert a dominant-negative effect on the adhesiveness of full-length Po.
- The dominant-negative effect is mediated by the prevention of full-length Po clustering.
- Cytoskeletal interactions, likely involving microtubules, are essential for the adhesive function of full-length Po.
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