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Comparison of mouse models reveals a molecular distinction between psychotic illness in PWS and schizophrenia
Simona K Zahova1, Trevor Humby2, Jennifer R Davies1
1MRC Centre for Neuropsychiatric Genetics and Genomics, School of Medicine, Cardiff University, Cardiff, UK.
Insights
Prader-Willi Syndrome (PWS) research reveals distinct genetic models show varied psychiatric endophenotypes. PWS-IC mice exhibit significant brain gene expression changes linked to psychotic illness, unlike PWS-cr models.
Area of Science:
- Neuroscience
- Genetics
- Psychiatry
Background:
- Prader-Willi Syndrome (PWS) is a genetic neurodevelopmental disorder impacting chromosome 15q11-q13.
- PWS is associated with hypotonia, hyperphagia, cognitive deficits, and behavioral issues, including a higher risk of psychotic illness.
- Distinct PWS genotypes correlate with varying prevalence rates of psychiatric disorders.
Purpose of the Study:
- To investigate the molecular underpinnings of psychiatric endophenotypes in PWS mouse models.
- To compare the transcriptomic profiles of PWS-IC and PWS-cr mouse models with distinct genetic deletions.
- To identify specific gene expression changes associated with psychiatric relevance in PWS.
Main Methods:
- Comparative analysis of behavioral and cognitive endophenotypes in PWS-IC and PWS-cr mouse models.
- RNA-sequencing (RNA-seq) of neonatal whole brain tissue from PWS-IC, PWS-cr, and wild-type littermates.
- Enrichment analysis of differentially expressed genes with Genome-Wide Association Study (GWAS) variants for psychotic illness.
Main Results:
- PWS-cr mice did not exhibit the same behavioral or cognitive endophenotypes as PWS-IC mice.
- RNA-seq revealed a greater number of transcriptional alterations in PWS-IC brains compared to PWS-cr brains.
- Differentially expressed genes in PWS-IC brains were enriched for GWAS variants linked to psychotic illness episodes, but not schizophrenia.
Conclusions:
- The PWS-IC mouse model displays transcriptomic changes relevant to psychotic illness, distinct from the PWS-cr model.
- Specific molecular pathways may underlie psychotic illness in Prader-Willi Syndrome.
- These findings offer insights for potential therapeutic interventions in PWS-related psychiatric conditions.
Abstract:
Prader-Willi Syndrome (PWS) is a neurodevelopmental disorder caused by mutations affecting paternal chromosome 15q11-q13, and characterized by hypotonia, hyperphagia, impaired cognition, and behavioural problems. Psychotic illness is a challenging problem for individuals with PWS and has different rates of prevalence in distinct PWS genotypes. Previously, we demonstrated behavioural and cognitive endophenotypes of relevance to psychiatric illness in a mouse model for one of the associated PWS genotypes, namely PWS-IC, in which deletion of the imprinting centre leads to loss of paternally imprinted gene expression and over-expression of Ube3a. Here we examine the broader gene expression changes that are specific to the psychiatric endophenotypes seen in this model. To do this we compared the brain transcriptomic profile of the PWS-IC mouse to the PWS-cr model that carries a deletion of the PWS minimal critical interval spanning the snoRNA Snord116 and Ipw. Firstly, we examined the same behavioural and cognitive endophenotypes of relevance to psychiatric illness in the PWS-cr mice. Unlike the PWS-IC mice, PWS-cr exhibit no differences in locomotor activity, sensory-motor gating, and attention. RNA-seq analysis of neonatal whole brain tissue revealed a greater number of transcriptional changes between PWS-IC and wild-type littermates than between PWS-cr and wild-type littermates. Moreover, the differentially expressed genes in the PWS-IC brain were enriched for GWAS variants of episodes of psychotic illness but, interestingly, not schizophrenia. These data illustrate the molecular pathways that may underpin psychotic illness in PWS and have implications for potential therapeutic interventions.
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