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Tle corepressors are differentially partitioned to instruct CD8+ T cell lineage choice and identity

Authors :
Weiqun Peng
David A. Sweetser
Shaojun Xing
Shuyang Yu
Xudong Zhao
Wooseok Seo
Fengyin Li
Jianfeng Wang
Peng Shao
Ichiro Taniuchi
Xiang Li
Justin C. Wheat
Selvi Ramasamy
Chengyu Liu
Hai-Hui Xue
Source :
The Journal of Experimental Medicine
Publication Year :
2018
Publisher :
Rockefeller University Press, 2018.

Abstract

Xing et al demonstrate the requirements for Tle transcriptional corepressors in CD8+ T cell development. Tle proteins are differentially partitioned to the Runx and Tcf/Lef complexes to promote CD8+ lineage choice and establish CD8+ T cell identity, respectively.<br />Tle/Groucho proteins are transcriptional corepressors interacting with Tcf/Lef and Runx transcription factors, but their physiological roles in T cell development remain unknown. Conditional targeting of Tle1, Tle3 and Tle4 revealed gene dose–dependent requirements for Tle proteins in CD8+ lineage cells. Upon ablating all three Tle proteins, generation of CD8+ T cells was greatly diminished, largely owing to redirection of MHC-I–selected thymocytes to CD4+ lineage; the remaining CD8-positive T cells showed aberrant up-regulation of CD4+ lineage-associated genes including Cd4, Thpok, St8sia6, and Foxp3. Mechanistically, Tle3 bound to Runx-occupied Thpok silencer, in post-selection double-positive thymocytes to prevent excessive ThPOK induction and in mature CD8+ T cells to silence Thpok expression. Tle3 also bound to Tcf1-occupied sites in a few CD4+ lineage-associated genes, including Cd4 silencer and St8sia6 introns, to repress their expression in mature CD8+ T cells. These findings indicate that Tle corepressors are differentially partitioned to Runx and Tcf/Lef complexes to instruct CD8+ lineage choice and cooperatively establish CD8+ T cell identity, respectively.<br />Graphical Abstract

Details

ISSN :
15409538 and 00221007
Volume :
215
Database :
OpenAIRE
Journal :
The Journal of Experimental Medicine
Accession number :
edsair.doi.dedup.....5e221599bb522a2acf99b04db1b5d76e