Proteolipid protein interactions in transfectants: implications for myelin assembly
M P Sinoway1, K Kitagawa, S Timsit
1Brookdale Center for Molecular Biology, Mount Sinai School of Medicine, New York, New York 10029.
Insights
Proteolipid proteins (PLP) and DM20 are key to CNS myelin. Coexpression of PLP with DM20 facilitates PLP transport to the cell surface, suggesting intracellular complex formation and potential adhesive roles in myelin.
Area of Science:
- Neuroscience
- Cell Biology
- Protein Biochemistry
Background:
- Proteolipid proteins (PLP) and DM20 are essential components of central nervous system (CNS) myelin.
- The precise mechanisms governing their delivery and organization within oligodendrocyte plasma membranes remain unclear.
Purpose of the Study:
- To investigate the intracellular transport and plasma membrane localization of PLP and DM20.
- To determine the role of coexpression in the cellular trafficking of these myelin proteins.
Main Methods:
- Expression of PLP and DM20, individually and together, in HeLa cells.
- Analysis of protein localization at different time points (24 and 48 hours) using cellular imaging techniques.
Main Results:
- Both PLP and DM20 were initially found in intracellular compartments.
- DM20 reached the plasma membrane by 48 hours.
- PLP required coexpression with DM20 for plasma membrane transport; otherwise, it remained intracellular.
- PLP could also localize to organelles involved in protein biosynthesis and endocytosis.
- Coexpressed PLP and DM20 accumulated at cell-cell contact sites, indicating potential adhesive properties.
Conclusions:
- Coexpression of DM20 facilitates the plasma membrane delivery of PLP in HeLa cells, suggesting intracellular interaction and complex formation.
- Proteolipids may form adhesive bonds at cell surfaces, contributing to myelin structure and stability.
Abstract:
The proteolipid proteins (PLP and DM20) are major constituents of CNS myelin, but how they are delivered to and organized within the oligodendrocyte plasma membrane is incompletely understood. We have expressed both PLP and DM20 singly or together in a host cell line, HeLa. In either DM20 or PLP transfectants, at early time points (24 hours), the expressed proteins are found within intracellular compartments. In DM20 transfectants, the protein is delivered to the plasma membrane by 48 hours. In HeLa cells, PLP remains intracellular when expressed in the absence of DM20; only when it is coexpressed with DM20 is it transported to the plasma membrane. In cotransfectants, PLP can also be localized to organelles involved in both the protein biosynthetic and the endocytic pathways. Since, in HeLa cells at least, the delivery of PLP to the plasma membrane is facilitated by the coexpression of DM20, we suggest that the two proteins interact intracellularly to form a complex. In some PLP/DM20 cotransfectants, the proteolipids are concentrated in regions of cell-cell contact. The regional accumulation of these proteins at cell-cell interfaces is highly reminiscent of the behavior in transfected cells of another myelin protein, P0, and certain cadherin polypeptides, both of which have readily demonstrable membrane adhesive properties. Our data suggests that at certain stoichiometric ratios, proteolipids can become stabilized at cell surfaces to form adhesive bonds.
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