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Published on: May 28, 2017
Behavioral deficit, oxidative stress, and mitochondrial dysfunction precede tau pathology in P301S transgenic mice
Magali Dumont1, Cliona Stack, Ceyhan Elipenahli
1Weill Cornell Medical College, Department of Neurology and Neuroscience, 525 East 68th St., Rm. A569A, New York, NY 10065, USA. mad2138@med.cornell.edu
Abstract:
Abnormal tau accumulation can lead to the development of neurodegenerative diseases. P301S mice overexpress the human tau mutated gene, resulting in tau hyperphosphorylation and tangle formation. Mice also develop synaptic deficits and microglial activation prior to any neurodegeneration and tangles. Oxidative stress can also affect tauopathy. We studied the role of oxidative stress in relationship to behavioral abnormalities and disease progression in P301S mice at 2, 7, and 10 mo of age. At 7 mo of age, P301S mice had behavioral abnormalities, such as hyperactivity and disinhibition. At the same age, we observed increased carbonyls in P301S mitochondria (∼215 and 55% increase, males/females), and deregulation in the activity and content of mitochondrial enzymes involved in reactive oxygen species formation and energy metabolism, such as citrate synthase (∼19 and ∼5% decrease, males/females), MnSOD (∼16% decrease, males only), cytochrome C (∼19% decrease, females only), and cytochrome C oxidase (∼20% increase, females only). These changes in mitochondria proteome appeared before tau hyperphosphorylation and tangle formation, which were observed at 10 mo and were associated with GSK3β activation. At that age, mitochondria proteome deregulation became more apparent in male P301S mitochondria. The data strongly suggest that oxidative stress and mitochondrial abnormalities appear prior to tau pathology.
Insights
Oxidative stress and mitochondrial dysfunction precede tau pathology in a mouse model of neurodegenerative disease. These early changes manifest as behavioral abnormalities before the onset of neurofibrillary tangles.
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Abnormal tau accumulation is a hallmark of neurodegenerative diseases.
- P301S mice model tauopathy with hyperphosphorylation and tangle formation.
- Synaptic deficits and microglial activation occur before neurodegeneration in these mice.
Purpose of the Study:
- Investigate the role of oxidative stress in P301S mouse behavior and disease progression.
- Determine if oxidative stress and mitochondrial abnormalities precede tau pathology.
Main Methods:
- Studied P301S mice at 2, 7, and 10 months of age.
- Assessed behavioral abnormalities (hyperactivity, disinhibition).
- Analyzed mitochondrial oxidative stress markers and enzyme activity/content.
Main Results:
- P301S mice exhibited behavioral abnormalities at 7 months.
- Mitochondrial carbonyls increased, and key enzyme activities were deregulated at 7 months.
- These mitochondrial changes preceded tau hyperphosphorylation, tangle formation, and GSK3β activation observed at 10 months.
Conclusions:
- Oxidative stress and mitochondrial abnormalities are early events in P301S tauopathy.
- These mitochondrial changes occur before the development of tau pathology.
- Suggests a potential therapeutic window targeting oxidative stress early in disease progression.
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