Iron deficiency causes aspartate-sensitive metabolic and proliferative dysfunction in CD8+ T cells
Teh, M. R.; Gudgeon, N.; Frost, J. N.; Sinclair, L. V.; Smith, A. L.; Millington, C. L.; Kronsteiner, B.; Roberts, J.; Marzullo, B. P.; Preston, A. E.; Rehwinkel, J.; Milne, T. A.; Tennant, D. A.; Dunachie, S. J.; Armitage, A. E.; Dimeloe, S. K.; Drakesmith, H.
Show abstract
Iron is an irreplaceable co-factor for metabolism. Iron deficiency affects >1 billion people, causing symptoms including anaemia and impaired immunity. Nevertheless, precisely how iron deprivation impacts immune cell function remains poorly characterised. We therefore interrogated how physiologically low iron availability affected activated CD8+ T cell metabolism and function, using multi-omic and metabolic labelling approaches. Iron limitation profoundly stalled proliferation without influencing cell viability, altered histone methylation status and disrupted mitochondrial membrane potential. Consistently, metabolism of glucose and glutamine in the TCA cycle was limited, indeed TCA cycle activity was partially reversed to a reductive trajectory. Previous studies have shown mitochondria-derived aspartate is crucial for proliferation of transformed cells. Surprisingly, we found aspartate was increased in stalled iron deficient CD8+ T-cells, but was not utilised cytosolically for nucleotide synthesis, likely due to trapping within depolarised mitochondria. Conversely, exogenous aspartate, which directly accesses the cytosol, markedly rescued the clonal expansion of even severely iron-deficient CD8+ T-cells. Overall, iron scarcity creates a mitochondrial-located metabolic bottleneck impairing T-cells, which can be bypassed by resupplying inhibited biochemical processes with aspartate. These findings reveal molecular consequences of iron deficiency for CD8+ T cell function, providing mechanistic insight into the basis for immune impairment during iron deficiency.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Regulation of the one carbon folate cycle as a shared metabolic signature of longevity 95%
- Mannose metabolism inhibition sensitizes acute myeloid leukemia cells to cytarabine and FLT3 inhibitor therapy by modulating fatty acid metabolism to drive ferroptotic cell death. 94%
- Identification of a Lipid Oxygen Radical Defense pathway and its epigenetic control 94%
Similar papers in this journal
Similar papers in this journal
- Glucose-dependent glycosphingolipid biosynthesis fuels CD8+ T cell function and tumor control 94%
- Integrative genetic analysis identifies FLVCR1 as an essential component of choline transport in mammals 94%
- Novel adaptation supports enhanced macrophage efferocytosis in limited-oxygen environments 94%
Similar papers in this journal
- Folate depletion induces erythroid differentiation through perturbation of de novo purine synthesis 95%
- Mitochondrial pyruvate transport regulates presynaptic metabolism and neurotransmission 95%
- Mapping the genetic landscape of iron metabolism uncovers the SETD2 methyltransferase as a modulator of iron flux. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.