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Treg specific Gata3 knock out array


ABSTRACT: The transcription factor Foxp3 is indispensible for the differentiation and function of regulatory T cells (Treg cells). To gain insights into the molecular mechanisms of Foxp3 mediated gene expression we purified Foxp3 complexes and explored their composition. Biochemical and mass-spectrometric analyses revealed that Foxp3 forms multi-protein complexes of 400-800 kDa or larger and identified 361 associated proteins ~30% of which are transcription-related. Foxp3 directly regulates expression of a large proportion of the genes encoding its co-factors. Reciprocally, some transcription factor partners of Foxp3 facilitate its expression. Functional analysis of Foxp3 cooperation with one such partner, Gata3, provided further evidence for a network of transcriptional regulation afforded by Foxp3 and its associates to control distinct aspects of Treg cell biology. Gene expression profile of Treg specific knock-out of Gata3 vs. their littermate controls were analyzed to gain insight into Gata3 dependendent genes in Treg cells. Treg cells (CD4+CD25+YFP+) sorted from Gata3F/FFoxp3YFP-Cre and Gata3F/+Foxp3YFP-Cre mice (three mice in each group) followed by microarray analyses.

ORGANISM(S): Mus musculus

SUBMITTER: Aaron Arvey 

PROVIDER: E-GEOD-39864 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Transcription factor Foxp3 and its protein partners form a complex regulatory network.

Rudra Dipayan D   deRoos Paul P   Chaudhry Ashutosh A   Niec Rachel E RE   Arvey Aaron A   Samstein Robert M RM   Leslie Christina C   Shaffer Scott A SA   Goodlett David R DR   Rudensky Alexander Y AY  

Nature immunology 20120826 10


The transcription factor Foxp3 is indispensible for the differentiation and function of regulatory T cells (T(reg) cells). To gain insights into the molecular mechanisms of Foxp3-mediated gene expression, we purified Foxp3 complexes and explored their composition. Biochemical and mass-spectrometric analyses revealed that Foxp3 forms multiprotein complexes of 400-800 kDa or larger and identified 361 associated proteins, ∼30% of which were transcription related. Foxp3 directly regulated expression  ...[more]

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