Transcriptome profiles in brains of mice heterozygous for a DYT1 dystonia-associated mutation in the endogenous Tor1a gene
Mitchell, S. B.; Chimenti, M. S.; Kawano, H.; Yuen, T. M. T.; Sjurson, A. E.; Iwabuchi, S.; Knudtson, K. L.; Bair, T. B.; Kolbe, D.; Harata, N. C.
Show abstract
In patients with the brain disorder dystonia, body movement is severely affected - with involuntary muscle contractions and abnormal postures, causing extensive deterioration of the patients quality of life. The most common inherited form of this disorder is DYT1 dystonia, which is caused by a mutation in TOR1A gene and autosomal dominant. The molecular mechanisms that underlie the effects of the TOR1A mutation on brain function remain unclear. To understand these, we examined the gene expression profiles (transcriptome) in four brain regions (cerebral cortex, hippocampus, striatum and cerebellum) in a mouse model, the heterozygous {Delta}E-torsinA knock-in mice which genetically reproduce the mutation in DYT1 dystonia. The samples were obtained at 2 to 3 weeks of age, a period during which synaptic abnormalities have been reported. Pairwise comparisons of brain regions revealed differential gene expression irrespective of genotype. A comparison of heterozygous to wild-type mice failed to reveal genotype-dependent differences in gene expression in any of the four brain regions when examined individually. However, genotype-dependent differences became apparent when the information for all brain regions was combined. These results suggest that any changes in the transcriptome within a brain region were subtle at this developmental stage, but that statistically significant changes occur across all brain regions. Such changes in the transcriptome, although subtle in degree, could underlie the processes that give rise to DYT1 dystonia.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TDP-43-M323K causes abnormal brain development and progressive cognitive and motor deficits associated with mislocalised and increased levels of TDP-43. 95%
- Proteomic signature of the Dravet syndrome in the genetic Scn1a-A1783V mouse model 94%
- Progressive alterations in polysomal architecture and activation of ribosome stalling relief factors in a mouse model of Huntington's disease 94%
Similar papers in this journal
- Atypical Neocortical Development in the Cited2 Conditional Knockout Leads to Behavioral Deficits Associated with Neurodevelopmental Disorders 94%
- Brain-derived neurotrophic factor and TrkB levels in mice that lack vesicular zinc: Effects of age and sex 94%
- Spreading depressions and periinfarct spreading depolarizations in the context of cortical plasticity 92%
Similar papers in this journal
- Deletion of the Clock Gene Period2 (Per2) in Glial Cells Alters Mood-Related Behavior in Mice 93%
- Autocrine regulation of adult neurogenesis by the endocannabinoid 2-arachidonoylglycerol (2-AG) 93%
- Genetic dissection of Down syndrome-associated alterations in APP/amyloid-β biology using mouse models 92%
Similar papers in this journal
- Transcriptional and Histone acetylation changes associated with CRE elements expose key factors governing the regulatory circuit in early stage of Huntington's disease models. 94%
- OTX2 homeoprotein functions in adult choroid plexus 94%
- Transcriptome profiling of the dorsomedial prefrontal cortex in suicide victims 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.