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Batf2 is a regulator of interferon gamma signaling in astrocytes during neuroinflammation

GSE288440 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 5 samples Submitted 2025/01/30 Platform GPL24676
Summary
Astrocytic interferon (IFN)g signaling is associated with reduced neuroinflammation; however, downstream effectors responsible for regulating this protection are unknown. Here we identify an interferon-specific transcription factor, basic leucine zipper ATF-like transcription factor (BATF)2, that plays a key role in modulating the consequences of IFNg signaling in astrocytes. Chromatin immunoprecipitation (ChIP) sequencing revealed that BATF2 binds and prevents the overexpression of interferon regulatory factor (IRF)1 and IRF1 targets such as Caspase-1. We also show that Batf2-/- mice exhibit exacerbated clinical disease severity in a murine model of CNS autoimmunity, and express increased astrocyte-specific IRF1 and Caspase-1, suggesting an amplified interferon response in vivo. Additionally, we demonstrate that BATF2 is expressed primarily in astrocytes within multiple sclerosis lesions and that this expression is co-localized with IRF1. Collectively, our results further support evidence of protective functions for IFNg and implicate BATF2 as a key suppressor of overactive immune signaling in astrocytes during neuroinflammation.
Published in
BATF2-mediated control of astrocyte proliferation
Tinkey RA, Frostino BJ, Habean ML et al. · The Journal of biological chemistry 2025 · PMID 40945729 · doi:10.1016/j.jbc.2025.110710
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Also filed as BioProject PRJNA1217491 and SRA study SRP560802. Searching any of these in the dataset finder brings you back here.

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