TRPM7 activity drives human CD4 T-cell activation and differentiation in a magnesium dependent manner
Madlmayr, A.; Hoelting, K.; Hoeger, B.; Lewitz, D.; Weng, M.; Haider, T.; Duggan, M.; Ross, R.; Horgen, F. D.; Sperandio, M.; Dietrich, A.; Gudermann, T.; Zierler, S.
Show abstract
T lymphocyte activation is a crucial process in the regulation of innate and adaptive immune responses. The ion channel-kinase TRPM7 has previously been implicated in cellular Mg2+ homeostasis, proliferation, and immune cell modulation. Here, we show that pharmacological and genetic silencing of TRPM7 leads to diminished human CD4 T-cell activation and proliferation following TCR mediated stimulation. In both primary human CD4 T cells and CRISPR/Cas-9 engineered Jurkat T cells, loss of TRPM7 led to altered Mg2+ homeostasis, Ca2+ signaling, reduced NFAT translocation, decreased IL-2 secretion and ultimately diminished proliferation and differentiation. While the activation of primary human CD4 T cells was dependent on TRPM7, polarization of naive CD4 T cells into regulatory T cells (Treg) was not. Taken together, these results highlight TRPM7 as a key protein of cellular Mg2+ homeostasis and CD4 T-cell activation. Its role in lymphocyte activation suggests therapeutic potential for TRPM7 in numerous T-cell mediated diseases. SummaryTRPM7 is crucial to maintaining cellular Mg2+ homeostasis and regulates human CD4 T-cell activation by modulating early Ca2+ signaling events in response to TCR-mediated stimulation subsequently, influencing T-cell differentiation in a Mg2+ dependent manner.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Allosteric Inhibition of the T Cell Receptor by a Designed Membrane Ligand 95%
- Neurotrophic factor Neuritin modulates T cell electrical and metabolic state for the balance of tolerance and immunity 95%
- Oxygen levels at the time of activation determine T cell persistence and immunotherapeutic efficacy 95%
Similar papers in this journal
- Polypyrimidine Tract Binding Protein 1 regulates the activation of mouse CD8 T cells 94%
- Type I interferons are important co-stimulatory signals during T cell receptor mediated MAIT cell activation 94%
- NKG7 is a stable marker of cytotoxicity across immune contexts and within the tumor microenvironment 94%
Similar papers in this journal
- Plasma Membrane Calcium ATPase (PMCA) Regulates Stoichiometry of CD4+ T-cell Compartments 97%
- Missing-In-Metastasis / Metastasis Suppressor 1 modulates B cell receptor signaling, B cell metabolic potential and T cell-independent immune responses. 94%
- Multiple environmental signaling pathways control the differentiation of RORγt-expressing regulatory T cells 94%
"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.