Mitochondrial Transcription Factor A Regulates Foxp3+ T Cell Mediated Maintenance of CD4+ T Cell Landscapes and Immunological Aging
Guo, K.; Wang, Z.; Debnath, T.; Mehta, H.; Abrham, E.; Even, Z.; Rahman, M.; Lund Da Costa, A.; Jain, S.; Wang, X.; Hur, J.; Murugaiyan, G.; Ting, A. T.; Brown-Borg, H.; Jurivich, D. A.; Khan, N.; Mathur, R.
Show abstract
Foxp3 regulatory T cells (Tregs) maintain immune homeostasis, yet the process that preserves their stability during aging remain unclear. Mechanistic progress has been hindered by models that ablate Tregs or delete Foxp3, which induce acute autoimmunity and prevent longitudinal study of physiological regulatory drift. Here, we establish a dose-dependent mitochondrial framework that preserves Treg lineage survival while permitting gradual metabolic attenuation. Using Treg-restricted TFAM modulation, a complementary haploinsufficient model, and whole-spleen single-cell profiling. We identify lineage-selective immune remodeling characterized by contraction of naive CD8 and follicular B-cell pools, alteration of CD4 states, expansion of activated Tregs, and emergence of neuroimmune stress linked transcriptional modules that parallel physiological aging. Mechanistically, mitochondrial insufficiency is associated with functional loss of FOXP3-centered chromatin coordination and enrichment of NF-{kappa}B/NFAT/AP-1 inflammatory and senescence programs while lineage identity remains detectable. Partial mitochondrial attenuation within Tregs alone is sufficient to drive chronic low-grade systemic inflammation, neuromuscular decline, gut microbial restructuring, and elevated microglial responsiveness without Treg depletion. Pharmacologic and microbiota-directed interventions partially reduce inflammatory tone and improve functional metrics. Together, our findings identify TFAM as a key regulator of immune aging and reveal that healthy mitochondrial function in Tregs is essential for protecting against inflammaging and age-associated functional decline.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TET proteins regulate Drosha expression and impact microRNAs in iNKT cells 94%
- Kir6.1, a component of an ATP-sensitive potassium channel, regulates natural killer cell development 93%
- Single cell transcriptomics reveals cell type specific features of developmentally regulated responses to lipopolysaccharide between birth and 5 years. 93%
Similar papers in this journal
- Discovery and characterization of LNCSOX17 as an essential regulator in human endoderm formation 93%
- Application of ATAC-Seq for genome-wide analysis of the chromatin state at single myofiber resolution 93%
- A single microRNA miR-195 rescues the arrested B cell development induced by EBF1 deficiency 93%
Similar papers in this journal
- NF-κB-Inducing Kinase (NIK) Governs the Mitochondrial Respiratory Capacity, Differentiation, and Inflammatory Status of Innate Immune Cells 94%
- Mitochondrial Fatty Acid Synthesis and Mecr Regulate CD4+ T Cell Function and Oxidative Metabolism 93%
- CPT2 mediated fatty acid oxidation is dispensable for humoral immunity 92%
Similar papers in this journal
- Mouse Memory CD8 T cell subsets defined by Tissue Resident Memory (TRM) Integrin Expression Exhibit Distinct Metabolic Profiles 94%
- The E26 Transformation-Specific-family transcription factor Spi-C is dynamically regulated by external signals in B cells 92%
- Erdr1 orchestrates macrophage polarization and determines cell fate via dynamic interplay with YAP1 and Mid1 92%
Similar papers in this journal
"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.