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Immune checkpoint molecule Tim-3 regulates microglial function and the development of Alzheimer’s disease pathology [scRNA-Seq]

GSE267764 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2025/01/13 Platform GPL24247
Summary
Microglia, resident immune cells in the brain, play a critical role in neurodevelopment and neurological diseases. We investigated the role of the immune checkpoint molecule Tim-3 (Havcr2), which was recently identified as a genetic risk factor for late-onset Alzheimer’s disease (LOAD) in microglia. While Tim-3 has been shown to play an important role in inducing T cell exhaustion, it shows high and specific expression in the microglia where its role is unknown. Here we show that Tim-3 expression in microglia was induced by TGFβ signaling. Mechanistically, Tim-3 binds both Smad2 and Tgfbr2 by its C-terminus tail and enhances TGFβ signaling by promoting the phosphorylation of Smad2 by Tgfbr, thereby contributing to microglial homeostasis. Genetic deletion of Tim-3 in microglia resulted in increased phagocytic activity with a gene expression profile skewed towards neurodegenerative microglia (MGnD) phenotype, also known as disease-associated microglia (DAM). Moreover, microglia-targeted deletion of Tim-3 ameliorated AD pathology in 5xFAD mice. Single-nucleus RNA sequencing (snRNA-seq) identified a subpopulation among MGnD/DAM microglia in Havcr2-deficient 5xFAD mice, characterized by increased pro-phagocytic and anti-inflammatory gene expression together with decreased proinflammatory gene expression. Additional single-cell RNAseq confirmed these transcriptomic shifts in Havcr2-deficient 5xFAD mice in most microglial clusters. Our study shows a Tim-3-mediated regulatory mechanism of homeostatic microglia through its interaction with TGFβ signaling and the beneficial role of targeting microglial Tim-3 in AD mice. Our findings promise a potential therapeutic strategy targeting checkpoint molecule Tim-3 in currently intractable AD.
Published in
Immune checkpoint TIM-3 regulates microglia and Alzheimer's disease
Kimura K, Subramanian A, Yin Z et al. · Nature 2025 · PMID 40205047 · doi:10.1038/s41586-025-08852-z
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Also filed as BioProject PRJNA1112818 and SRA study SRP508373. Searching any of these in the dataset finder brings you back here.

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