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E-GEOD-60354 GSE60354 transcription profiling by array Mus musculus

Retinoic acid signaling constrains the plasticity of Th1 cells and prevents development of pathogenic Th17 cells [Affymetrix experiments]

·Released March 10, 2015 ·Updated March 15, 2015
8
Samples
8
Assays
1
Array Platforms
Description

CD4+ T cells differentiate into phenotypically distinct T-helper cells upon antigenic stimulation. Regulation of plasticity between these CD4+ T-cell lineages is critical for immune homeostasis and prevention of autoimmune diseases. However, the factors that regulate lineage stability are largely unknown. Here we investigate a role for retinoic acid (RA) in the regulation of lineage stability using T helper 1 (Th1) cells, traditionally considered the most phenotypically stable Th subset. We found that RA, through its receptor RARa, sustains stable expression of Th1 lineage specifying genes as well as repressing genes that instruct Th17 cell fate. RA signaling is essential for limiting Th1 cell conversion into Th17 effectors and for preventing pathogenic Th17 responses in vivo. Our studies identify RA-RARa as a key component of the regulatory network governing Th1 cell fate and define a new paradigm for the development of pathogenic Th17 cells. These findings have important implications for autoimmune diseases in which dysregulated Th1-Th17 responses are observed. IFN-gamma+ Th1 cells from IFNgeYFP reporter mouse; comparing dnRARa to WT

Array Platforms
A-GEOD-16570
[MoGene-2_0-st] Affymetrix Mouse Gene 2.0 ST Array [transcript (gene) version](8 items)
Sample Attributes
genotype
dnRara, Wild Type
organism
Mus musculus
strain
C57BL/6
Experiment Info
Accession
E-GEOD-60354
GEO ID
GSE60354
Type
transcription profiling by array
Organism
Mus musculus
Released
March 10, 2015
Updated
March 15, 2015
Submitter
Matthew Arno、 Chrysothemis C Brown、 Venu Madhav Pullabhatla、 Randolph Noelle
Analysis Services
Analysis Services

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