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Conditional knockout of TOG results in CNS hypomyelination
Michael J Maggipinto1, Joshay Ford1, Kristine H Le1
1Department of Neuroscience, University of Connecticut School of Medicine, Farmington, Connecticut.
Abstract:
The tumor overexpressed gene (TOG) protein is present in RNA granules that transport myelin basic protein (MBP) mRNA in oligodendrocyte processes to the myelin compartment. Its role was investigated by conditionally knocking it out (KO) in myelinating glia in vivo. TOG KO mice have severe motor deficits that are already apparent at the time of weaning. This phenotype correlates with a paucity of myelin in several CNS regions, the most severe being in the spinal cord. In the TOG KO optic nerve <30% of axons are myelinated. The number of oligodendrocytes in the corpus callosum, cerebellum, and cervical spinal cord is normal. In the absence of TOG, the most patent biochemical change is a large reduction in MBP content, yet normal amounts of MBP transcripts are found in the brain of affected animals. MBP transcripts are largely confined to the cell body of the oligodendrocytes in the TOG KO in contrast to the situation in wild type mice where they are found in the processes of the oligodendrocytes and in the myelin compartment. These findings indicate that MBP gene expression involves a post-transcriptional TOG-dependent step. TOG may be necessary for MBP mRNA assembly into translation permissive granules, and/or for transport to preferred sites of translation. GLIA 2017;65:489-501.
Insights
The tumor overexpressed gene (TOG) protein is crucial for myelin basic protein (MBP) mRNA transport in oligodendrocytes. Its absence causes severe motor deficits and reduced myelination, indicating a key post-transcriptional role.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- The tumor overexpressed gene (TOG) protein localizes to RNA granules involved in myelin basic protein (MBP) mRNA transport.
- Oligodendrocytes produce myelin, essential for CNS function, and rely on efficient mRNA transport for this process.
Purpose of the Study:
- To investigate the in vivo role of TOG protein in myelinating glia.
- To determine the impact of TOG knockout on oligodendrocyte function and myelination.
Main Methods:
- Conditional knockout of the TOG gene in myelinating glia of mice.
- Assessment of motor function, myelin content, and MBP mRNA localization in TOG-deficient mice.
Main Results:
- TOG knockout mice exhibit severe motor deficits and reduced myelination, particularly in the spinal cord.
- MBP mRNA is retained in oligodendrocyte cell bodies, with significantly reduced MBP protein content, despite normal transcript levels.
- Oligodendrocyte numbers remain normal, suggesting a defect in post-transcriptional regulation or transport.
Conclusions:
- TOG protein is essential for the post-transcriptional regulation of MBP gene expression.
- TOG facilitates MBP mRNA transport and/or translation in oligodendrocyte processes and myelin.
- This highlights a critical role for TOG in ensuring proper myelination and neuronal function.
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