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RNA-seq of naïve and activated murine CD8+ T-cells cultured in high iron (0.625 mg/mL holotransferrin) or low iron (0.001 mg/mL holotransferrin) conditions

GSE251962 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2025/03/22 Platform GPL24247
Summary
Iron is an irreplaceable co-factor for metabolism and iron deficiency affects >1 billion people, causing anaemia and impairing immunity. How iron deprivation influences normal cellular function remains poorly characterised. In activated CD8+ T-cells we found that iron scarcity profoundly stalled proliferation and disrupted mitochondrial redox control without influencing cell viability. The TCA cycle was partially redirected to a reductive trajectory, and the repressive H3K27me3 histone mark, usually decreased post-activation, was maintained. Surprisingly, aspartate, which is crucial for proliferation, was increased in stalled iron deficient cells but was not utilised cytosolically, indicating trapping within depolarised mitochondria. Exogenous aspartate increased ATP, suppressed H3K27me3 and markedly rescued clonal expansion. We propose that iron scarcity creates a metabolic bottleneck impairing activation and proliferation of T-cells, and which is bypassed by resupplying biochemical processes with aspartate. These findings reveal mechanistic consequences of iron deficiency and shed light on the response of T-cells to nutritional variation.
Published in
Iron deficiency causes aspartate-sensitive dysfunction in CD8(+) T cells
Teh MR, Gudgeon N, Frost JN et al. · Nature communications 2025 · PMID 40541943 · doi:10.1038/s41467-025-60204-7
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Also filed as BioProject PRJNA1056032 and SRA study SRP479744. Searching any of these in the dataset finder brings you back here.

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