Scinovex
articleTop 10% cited

DNA demethylation in the human <i>FOXP3</i> locus discriminates regulatory T cells from activated FOXP3<sup>+</sup> conventional T cells

European Journal of Immunology · 2007 · Vol. 37(9) · pp. 2378–2389
Udo BaronStefan FloessGeorg WieczorekKatrin BaumannAndreas GrützkauJun DongAndreas ThielTina J. BoeldPetra HoffmannMatthias EdingerIvana TürbachovaAlf HamannSven OlekJochen Huehn

Abstract

The transcription factor FOXP3 is critical for development and function of regulatory T cells (Treg). Their number and functioning appears to be crucial in the prevention of autoimmunity and allergy, but also to be a negative prognostic marker for various solid tumors. Although expression of the transcription factor FOXP3 currently constitutes the best-known marker for Treg, in humans, transient expression is also observed in activated non-Treg. Extending our recent findings for the murine foxp3 locus, we observed epigenetic modification of several regions in the human FOXP3 locus exclusively occurring in Treg. Importantly, activated conventional CD4(+) T cells and TGF-beta-treated cells displayed no FOXP3 DNA demethylation despite expression of FOXP3, whereas subsets of Treg stable even upon extended in vitro expansion remained demethylated. To investigate whether a whole set of genes might be epigenetically imprinted in the Treg lineage, we conducted a genome-wide differential methylation hybridization analysis. Several genes were found displaying differential methylation between Treg and conventional T cells, but none beside FOXP3 turned out to be entirely specific to Treg when tested on a broad panel of cells and tissues. We conclude that FOXP3 DNA demethylation constitutes the most reliable criterion for natural Treg available at present.

Immune Cell Function and InteractionT-cell and B-cell ImmunologyCytomegalovirus and herpesvirus researchBiologyFOXP3DemethylationDNA demethylationMolecular biologyDNALocus (genetics)Cell biologyGeneGenetics

MeSH terms

Calcium-Binding ProteinsCells, CulturedFemaleGenetic MarkersHumansImmunity, InnateLymphocyte ActivationMaleSensitivity and SpecificityT-LymphocytesTrans-ActivatorsTransforming Growth Factor betaDNA MethylationGene Expression ProfilingCell Proliferation
Citations
673
FWCI
11.86
field-weighted impact
References
49
Percentile
99%
vs. same field & year
Citations per year
Cited by
Type 1 diabetes immunotherapy using polyclonal regulatory T cells
Science Translational Medicine · 2015 · 999 citations
Regulatory T Cells: Mechanisms of Differentiation and Function
Annual Review of Immunology · 2007 · 2,780 citations
DNA methylation controls <i>Foxp3</i> gene expression
European Journal of Immunology · 2008 · 760 citations
Plasticity of CD4+ T Cell Lineage Differentiation
Immunity · 2009 · 1,505 citations
References
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.