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Altered gene expression for calpain/calpastatin system in motor neuron degeneration (Mnd) mutant mouse brain and
Abstract:
The calcium-activated neutral proteases (CANP, calpains) have been implicated in both acute and chronic neurodegenerative processes. In the present study, we analyzed the in situ mRNA expression of calpain I and II and their endogenous inhibitor, calpastatin, in the motor neuron degeneration (Mnd) mutant mouse, which exhibits progressive dysfunction of the spinal cord and brain. As the disease progresses, the mutants show increasingly pronounced motor abnormalities which coincide with swelling of the spinal motor neurons, neocortex, hippocampal CA regions and cerebellar Purkinje cells. In situ hybridization studies show that the Mnd mice have a significantly higher level of calpain I, calpain II and calpastatin than the congenic controls in the following brain regions and cell types: hippocampal CA3 region, pyramidal cells, cerebellar Purkinje cells and spinal cord motor neurons. However, no differences in calpain or calpastatin mRNA levels are observed in glial and cerebellar granule cells of Mnd and control mice. Western blots and competitive RT-PCR analyses of brain and spinal cord homogenates are confirmative. Such altered gene expression in specific cell types of brain and spinal cord suggests the involvement of the calpain/calpastatin system.
Insights
The study found elevated calpain I, calpain II, and calpastatin mRNA in specific neurons of motor neuron degeneration (Mnd) mice. This suggests the calpain/calpastatin system is involved in neurodegeneration.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Calcium-activated neutral proteases (calpains) are linked to neurodegenerative diseases.
- Motor neuron degeneration (Mnd) mutant mice display progressive neurological dysfunction.
Purpose of the Study:
- To investigate the mRNA expression of calpain I, calpain II, and calpastatin in Mnd mice.
- To determine the role of the calpain/calpastatin system in Mnd pathogenesis.
Main Methods:
- In situ hybridization to analyze mRNA expression in specific brain and spinal cord regions.
- Western blot and competitive RT-PCR to confirm gene expression levels.
Main Results:
- Mnd mice showed significantly higher calpain I, calpain II, and calpastatin mRNA in hippocampal CA3 pyramidal cells, cerebellar Purkinje cells, and spinal cord motor neurons compared to controls.
- No significant differences were observed in glial or cerebellar granule cells.
- Western blot and RT-PCR results corroborated the in situ hybridization findings.
Conclusions:
- The calpain/calpastatin system is differentially expressed in specific neuronal populations during Mnd progression.
- Altered expression suggests the involvement of the calpain/calpastatin system in the neurodegenerative process of Mnd.