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Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
The DM20 protein of myelin: intracellular and surface expression patterns in transfectants
S Timsit1, M P Sinoway, L Levy
1Hôpital de la Salpêtrière, INSERM U. 134, Paris, France.
Insights
DM20, a central nervous system (CNS) myelin protein, is synthesized with a delay before myelin membrane insertion. Unlike P0, DM20 does not mediate significant cell adhesion, suggesting a more subtle role.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- DM20 is an abundant myelin-specific protein in the CNS.
- The precise function of DM20 during myelinogenesis remains unclear.
Purpose of the Study:
- To investigate the cellular localization and potential adhesive properties of DM20.
- To compare DM20's function with that of P0, a known adhesion molecule in peripheral nervous system (PNS) myelin.
Main Methods:
- Cloning of DM20 cDNA from adult mouse brain RNA.
- Expression of DM20 in HeLa cells.
- Immunofluorescence detection of DM20 localization.
- Ultrastructural analysis of cell-cell contacts in DM20-expressing cells.
Main Results:
- DM20 localizes to intracellular clumps (likely ER/Golgi) and the plasma membrane.
- A significant delay exists between DM20 synthesis and its insertion into the myelin membrane.
- DM20-expressing cells show no significant ultrastructural changes at cell-cell contact sites.
Conclusions:
- DM20 accumulates intracellularly before myelin membrane integration.
- DM20's adhesive properties, if present, are considerably less pronounced than those of P0.
- DM20 may play a more subtle role in CNS myelinogenesis than previously thought.
Abstract:
DM20 is an abundant CNS myelin-specific protein whose role in myelinogenesis is unknown. We have cloned the DM20 cDNA from adult mouse brain total RNA using the polymerase chain reaction and expressed it in HeLa cells. DM20, detected by immunofluorescence in stable transfectants, is present in some cells in large, intensely fluorescent intracellular clumps that probably represent elements of the rough endoplasmic reticulum and Golgi apparatus. Frequently, intense DM20 fluorescence could be detected at the plasma membrane. These findings are consistent with previous studies demonstrating that an intracellular "pool" of DM20 and its larger isoform, proteolipid protein, exists and that a substantial lag occurs between synthesis and insertion of these proteins into the expanding myelin membrane. Permanent DM20 expressors in contact with one another do not display any ultrastructural rearrangements at regions of cell-cell contact, in contrast to what we have previously reported for P0, a PNS-specific protein shown to mediate adhesion of the extracellular faces of the Schwann cell during PNS myelinogenesis. We believe that these results indicate that if DM20 is indeed an adhesion molecule, this property is likely to be significantly more subtle than P0-mediated adhesion.

