Mouse Gene Set: GAVIN_FOXP3_TARGETS_CLUSTER_T7

For the Human gene set with the same name, see GAVIN_FOXP3_TARGETS_CLUSTER_T7

Standard name GAVIN_FOXP3_TARGETS_CLUSTER_T7
Systematic name MM723
Brief description Cluster T7 of genes with similar expression profiles in thymic T lymphocytes after FOXP3 [GeneID=50943] loss of function (LOF).
Full description or abstract Regulatory CD4+ T cells (Tr cells), the development of which is critically dependent on X-linked transcription factor Foxp3 (forkhead box P3), prevent self-destructive immune responses. Despite its important role, molecular and functional features conferred by Foxp3 to Tr precursor cells remain unknown. It has been suggested that Foxp3 expression is required for both survival of Tr precursors as well as their inability to produce interleukin (IL)-2 and independently proliferate after T-cell-receptor engagement, raising the possibility that such 'anergy' and Tr suppressive capacity are intimately linked. Here we show, by dissociating Foxp3-dependent features from those induced by the signals preceding and promoting its expression in mice, that the latter signals include several functional and transcriptional hallmarks of Tr cells. Although its function is required for Tr cell suppressor activity, Foxp3 to a large extent amplifies and fixes pre-established molecular features of Tr cells, including anergy and dependence on paracrine IL-2. Furthermore, Foxp3 solidifies Tr cell lineage stability through modification of cell surface and signalling molecules, resulting in adaptation to the signals required to induce and maintain Tr cells. This adaptation includes Foxp3-dependent repression of cyclic nucleotide phosphodiesterase 3B, affecting genes responsible for Tr cell homeostasis.
Collection M2: Curated
      CGP: Chemical and Genetic Perturbations
Source publication Pubmed 17220874   Authors: Gavin MA,Rasmussen JP,Fontenot JD,Vasta V,Manganiello VC,Beavo JA,Rudensky AY
Exact source Fig 5S: cluster T7
Related gene sets (show 9 additional gene sets from the source publication)

(show 7 gene sets from the same authors)
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Source species Mus musculus
Contributed by Jessica Robertson (MSigDB Team)
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Version history 2022.1.Mm: First Introduced.

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