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DAP12 deficiency alters microglia-oligodendrocyte communication and enhances resilience against tau toxicity

GSE246090 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2025/10/23 Platform GPL24247
Summary
Pathogenic tau accumulation fuels neurodegeneration in Alzheimer’s disease (AD). The role of microglia in tau-driven neurodegeneration is intricate, with DAP12 (DNAX-activation protein 12) triggering microglial immune responses. Mice lacking DAP12 become resistant to tau-induced brain toxicity in tauopathy mice, yet the precise mechanism remains elusive. Our current study uncovers a novel resilience mechanism against tau toxicity conferred by Dap12 deletion. While inactivation of Dap12 elevates tau inclusions, potentially disrupting microglial tau processing, it curbs tau-induced brain inflammation and ameliorates myelin and synapse loss. Tau-induced disease-associated clusters in microglia (MG) and intermediate oligodendrocytes (iOli) are abolished by removal of Dap12. Additionally, AD brains exhibit mouse iOli-like cells spatially correlated with tau pathology. In summary, our study reveals that DAP12 signaling triggers toxic interactions between microglia and oligodendrocytes in tauopathy, mediating tau-induced damage to oligodendrocytes and synaptic loss. Targeting DAP12 signaling presents a promising therapeutic approach for enhancing resilience against tau toxicity in AD.
Published in
DAP12 deletion reduces neuronal SLIT2 and demyelination and enhances brain resilience in female tauopathy mice
Chen H, Fan L, Guo Q et al. · Molecular neurodegeneration 2025 · PMID 41331787 · doi:10.1186/s13024-025-00903-3
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Also filed as BioProject PRJNA1031527 and SRA study SRP468104. Searching any of these in the dataset finder brings you back here.

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