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Published on: May 8, 2014
Mapping the adhesive domains of the myelin Po protein
K Zhang1, Y Merazga, M T Filbin
1Department of Biological Sciences, Hunter College of the City University of New York, New York 10021, USA.
Insights
The Po protein
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- The Po protein is crucial for compacting peripheral nervous system (PNS) myelin.
- It mediates adhesion at the intraperiod line via homophilic interactions of its immunoglobulin (Ig)-like domain.
Purpose of the Study:
- To precisely map the domains of the Po protein responsible for its homophilic membrane adhesion.
- To investigate the role of specific amino acids within the Ig-like domain in Po-mediated adhesion.
Main Methods:
- Utilized Chinese hamster ovary (CHO) cells transfected with the Po protein to monitor in vitro adhesion.
- Assessed the ability of antibodies and peptides targeting specific Po protein segments to inhibit cell aggregation.
- Employed site-directed mutagenesis to alter key amino acids (Asp 92 and Gly 94) within the Po protein sequence.
Main Results:
- Antibodies and peptides corresponding to the SDNGT sequence (amino acids 91-95) completely blocked Po-mediated cell adhesion.
- Mutating Asp 92 to glutamate and Gly 94 to alanine abolished cell aggregation, despite the mutated Po protein reaching the cell surface.
- Antibodies and peptides targeting the Po 74-82 sequence partially inhibited adhesion, suggesting multiple adhesive domains.
Conclusions:
- The SDNGT sequence within the extracellular domain of the Po protein is critical for its adhesive function.
- Specific amino acids Asp 92 and Gly 94 are essential for Po-mediated myelin adhesion.
- The Po protein likely possesses multiple adhesion sites, contributing to its role in PNS myelin compaction.
Abstract:
The Po protein holds PNS myelin compact at the intraperiod line by homophilic interactions of its single immunoglobulin (Ig)-like domain. Using transfected Chinese hamster ovary (CHO) cells expressing Po we can monitor this adhesion in vitro and have shown that the cells expressing Po when incubated as a single-cell suspension form large aggregates, whereas control-transfected cells do not. To precisely map the domains of Po responsible for Po:Po-mediated membrane adhesion, the ability of a number of antibodies raised to peptides corresponding to segments of the Ig-domain of Po, and the ability of the Po-peptides themselves, to inhibit aggregation was assessed. Both antibodies to Po-peptide, SDNGT, corresponding to amino acids Po 91-95, and the peptide itself, were able to block adhesion completely. Furthermore, within this Po sequence, amino acids Asp 92 and Gly 94 are conserved in a large number of V-like Ig-domains. To determine if these two amino acids are important for Po-mediated adhesion, the nucleotides coding for Asp 92 and Gly 94 were mutated to encode glutamate and alanine, respectively. Although the mutated Po reached the surface in transfected CHO cells and was glycosylated, the cells did not aggregate. These results suggest that the sequence SDNGT in the extracellular domain of Po is important for adhesion. In addition, antibodies to a second sequence, Po 74-82, and the peptide itself, also partially inhibited Po: Po-mediated adhesion indicating that there is more than one adhesive domain on Po-protein.
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