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Elevated Plus Maze for Mice
Published on: December 22, 2008
Mice with neuron-specific accumulation of mitochondrial DNA mutations show mood disorder-like phenotypes
T Kasahara1, M Kubota, T Miyauchi
1Laboratory for Molecular Dynamics of Mental Disorders, RIKEN Brain Science Institute, Wako-shi, Saitama, Japan.
Abstract:
There is no established genetic model of bipolar disorder or major depression, which hampers research of these mood disorders. Although mood disorders are multifactorial diseases, they are sometimes manifested by one of pleiotropic effects of a single major gene defect. We focused on chronic progressive external ophthalmoplegia (CPEO), patients with which sometimes have comorbid mood disorders. Chronic progressive external ophthalmoplegia is a mitochondrial disease, which is accompanied by accumulation of mitochondrial DNA (mtDNA) deletions caused by mutations in nuclear-encoded genes such as POLG (mtDNA polymerase). We generated transgenic mice, in which mutant POLG was expressed in a neuron-specific manner. The mice showed forebrain-specific defects of mtDNA and had altered monoaminergic functions in the brain. The mutant mice exhibited characteristic behavioral phenotypes, a distorted day-night rhythm and a robust periodic activity pattern associated with estrous cycle. These abnormal behaviors resembling mood disorder were worsened by tricyclic antidepressant treatment and improved by lithium, a mood stabilizer. We also observed antidepressant-induced mania-like behavior and long-lasting irregularity of activity in some mutant animals. Our data suggest that accumulation of mtDNA defects in brain caused mood disorder-like mental symptoms with similar treatment responses to bipolar disorder. These findings are compatible with mitochondrial dysfunction hypothesis of bipolar disorder.
Insights
Mitochondrial DNA defects in the brain may cause mood disorder symptoms, similar to bipolar disorder. Mouse models showed that these defects lead to behavioral changes and respond to mood disorder treatments.
Area of Science:
- Neuroscience
- Genetics
- Mitochondrial Biology
Background:
- Mood disorders lack established genetic models, hindering research.
- Mood disorders can arise from single gene defects with pleiotropic effects.
- Chronic progressive external ophthalmoplegia (CPEO), a mitochondrial disease, is sometimes comorbid with mood disorders.
Purpose of the Study:
- To investigate the link between mitochondrial dysfunction and mood disorders.
- To create and analyze a mouse model for mood disorder research.
Main Methods:
- Generated neuron-specific transgenic mice expressing mutant POLG.
- Analyzed forebrain mitochondrial DNA (mtDNA) defects and monoaminergic functions.
- Observed behavioral phenotypes, circadian rhythms, and responses to treatments.
Main Results:
- Mice exhibited forebrain-specific mtDNA defects and altered brain monoaminergic functions.
- Mutant mice displayed mood disorder-like behaviors, including disturbed rhythms.
- Behaviors worsened with antidepressants and improved with lithium, mimicking bipolar disorder responses.
Conclusions:
- Accumulation of mtDNA defects in the brain can cause mood disorder-like symptoms.
- Findings support the mitochondrial dysfunction hypothesis of bipolar disorder.
- This model offers new avenues for studying mood disorders and potential treatments.

