ArticleBrain, behavior, and immunity2025
Prolonged STAT1 signaling in neurons causes hyperactive behavior.
Article in Brain, behavior, and immunity, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- Transcription Factors in the Pathogenesis of Schizophrenia.Life (Basel, Switzerland) · 2026Review
- Targeting the CCL7-STAT1 axis attenuates microglial neurotoxicity and photoreceptor degeneration in retinitis pigmentosa.Journal of neuroinflammation · 2026Article
- Proteomics revealed the underlying mechanism of STAT1-induced cognitive deficits in 2-month-old C57 mice.Experimental brain research · 2025Article
- Linking Metabolic Disorders and Immune System Phenomena in Schizophrenia: The Role of Adipose Tissue and Inflammation.Biomedicines · 2025Review
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Authors and funding
8 authors.
Funding
Abstract
The interferon (IFN)-induced STAT1 signaling pathway is a canonical immune pathway that has also been implicated in regulating neuronal activity. The pathway is enriched in brains of individuals with autism spectrum disorder (ASD) and schizophrenia (SZ). Over-activation of the STAT1 pathway causes pathological transcriptional responses, however it is unclear how these responses might translate into behavioral phenotypes. We hypothesized that prolonged STAT1 signaling in neurons would be sufficient to cause behavioral deficits associated with neurodevelopmental disorders. In this study, we developed a novel mouse model with the clinical STAT1 gain-of-function mutation, T385M, in neurons. These mice were hyperactive and displayed neural hypoactivity with less neuron counts in the caudate putamen. Driving the STAT1 gain-of-function mutation exclusively in dopaminergic neurons, which project to the caudate putamen of the dorsal striatum, mimicked some hyperactive behaviors without a reduction of neurons. Moreover, we demonstrated that this phenotype is neuron specific, as mice with prolonged STAT1 signaling in all excitatory or inhibitory neurons or in microglia were not hyperactive. Overall, these findings suggest that STAT1 signaling in neurons is a crucial player in regulating striatal neuron activity and aspects of motor behavior.
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Registered trials
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