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Impaired slow axonal transport in wobbler mouse motor neuron disease
Abstract:
We studied slow axonal transport and morphometry of forelimb axons in wobbler mice and controls. In wobbler mice, the total radioactivity migrating with the slow transport was decreased by 50%. The velocity of transport also appeared to be reduced; 15 days following administration of a radioisotope, polypeptides migrating with slow component a of transport did not form a peak and remained mostly 2 mm from the spinal cord, while in controls slow component a was distributed as a peak which was located 4 mm from the cord. The ratios of the 68-kDa neurofilament subunit to tubulin and actin were significantly decreased (p less than 0.01 and p less than 0.005, respectively). This finding is consistent with a preferential reduction of the radioactivity migrating with neurofilament proteins in wobbler mice. Moreover, both the size and number of myelinated axons were markedly diminished, but their length was not significantly different, indicating that dying-back does not take place in axons of wobbler mice up to 12 mm from the spinal cord. The reduction in axonal transport may be due to the reduction in number and caliber of the axons and/or to reduced protein synthesis in cervical lower motor neurons; however, the abnormal distribution of the radioactive substance definitely results from impairment of the slow transport in the axons of the forelimb roots of wobbler mice. The transport impairment is not related to the presence of morphological changes in the perikaryon of wobbler mouse lower motor neurons, as it is much more widespread than would be expected if only altered neurons were involved.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Slow axonal transport is significantly impaired in wobbler mice, with reduced neurofilament protein ratios and diminished axon caliber. This points to a primary defect in axonal transport mechanisms.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Wobbler mice are a model for motor neuron disease.
- Slow axonal transport is crucial for neuronal maintenance and function.
Purpose of the Study:
- To investigate the mechanisms of slow axonal transport and axonal morphometry in wobbler mice.
- To determine if impaired axonal transport contributes to the pathology of wobbler mice.
Main Methods:
- Radioisotope labeling to track slow axonal transport.
- Morphometric analysis of forelimb axons.
- Quantification of neurofilament proteins, tubulin, and actin.
Main Results:
- Slow axonal transport velocity and total radioactivity were reduced by 50% in wobbler mice.
- Ratios of neurofilament subunit to tubulin and actin were significantly decreased.
- Axon caliber and number were reduced, but not length, indicating no dying-back phenomenon.
Conclusions:
- Impaired slow axonal transport, particularly of neurofilaments, is a key feature in wobbler mice.
- The transport defect is not secondary to perikaryon morphological changes.
- Axonal transport impairment is a primary defect contributing to wobbler mouse pathology.