PLC-beta1 knockout mice as a model of disrupted cortical development and plasticity: behavioral endophenotypes and
Caitlin E McOmish1, Emma L Burrows, Monique Howard
1Howard Florey Institute, University of Melbourne, Parkville, Victoria, Australia. caitlin.mcomish@florey.edu.au
Abstract:
The complexity of the genetics underlying schizophrenia is highlighted by the multitude of molecular pathways that have been reported to be disrupted in the disorder including muscarinic, serotonergic, and glutamatergic signaling systems. It is of interest, therefore, that phospholipase C-beta1 (PLC-beta1) acts as a point of convergence for these pathways during cortical development and plasticity. These signaling pathways, furthermore, are susceptible to modulation by RGS4, one of the more promising candidate genes for schizophrenia. PLC-beta1 knockout mice were behaviorally assessed on tests including fear conditioning, elevated plus maze, and the Y maze. In situ hybridization was used to assess RGS4 expression. We found that PLC-beta1 knockout mice display abnormal anxiety profiles on some, but not all measures assessed, including decreased anxiety on the elevated plus maze. We also show memory impairment and a complete absence of acquisition of hippocampal-dependent fear conditioning. Furthermore, at a molecular level, we demonstrate dramatic changes in expression of RGS4 mRNA in selective regions of the PLC-beta1 knockout mouse brain, particularly the CA1 region of the hippocampus. These results validate the utility of the PLC-beta1 knockout mouse as a model of schizophrenia, including molecular and cellular evidence for disrupted cortical maturation and associated behavioral endophenotypes.
Insights
Phospholipase C-beta1 (PLC-beta1) knockout mice exhibit schizophrenia-like behaviors and altered RGS4 gene expression, validating their use as a model for studying this complex brain disorder.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Schizophrenia genetics involve disrupted signaling pathways like muscarinic, serotonergic, and glutamatergic.
- Phospholipase C-beta1 (PLC-beta1) converges these pathways during cortical development and plasticity.
- RGS4, a candidate gene for schizophrenia, modulates these critical signaling pathways.
Purpose of the Study:
- To investigate the role of PLC-beta1 in neural pathways relevant to schizophrenia.
- To assess behavioral and molecular changes in PLC-beta1 knockout mice.
- To validate the PLC-beta1 knockout mouse as a model for schizophrenia.
Main Methods:
- Behavioral assessments in PLC-beta1 knockout mice (fear conditioning, elevated plus maze, Y maze).
- In situ hybridization to analyze RGS4 mRNA expression.
- Analysis of molecular and cellular changes in the brain.
Main Results:
- PLC-beta1 knockout mice showed altered anxiety profiles and impaired hippocampal-dependent fear conditioning.
- Significant memory deficits were observed in the knockout mice.
- Dramatic changes in RGS4 mRNA expression were found in specific brain regions, particularly the hippocampus.
Conclusions:
- PLC-beta1 knockout mice display behavioral endophenotypes relevant to schizophrenia.
- Disrupted RGS4 expression in these mice suggests a molecular link to the disorder.
- The PLC-beta1 knockout mouse is a valuable model for studying schizophrenia's genetic and developmental aspects.
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