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Transcriptional repressor ZEB2 promotes terminal differentiation of CD8+ effector and memory T cell populations during infection

Authors :
J Adam Best
Agata Stryjewska
Luca Gattinoni
Ananda W. Goldrath
Jessica V. Nguyen
Yujiro Higashi
Steven Goossens
Kyla D. Omilusik
Danny Huylebroeck
Eve Seuntjens
Rahul Roychoudhuri
Lynne M. Bird
Christiane Zweier
Hisato Kondoh
Jody J. Haigh
Alexander Weidemann
Bingfei Yu
Cell biology
Source :
The Journal of Experimental Medicine, JOURNAL OF EXPERIMENTAL MEDICINE, The Journal of experimental medicine, vol 212, iss 12, Journal of Experimental Medicine, 212(12), 2027-2039. Rockefeller University Press
Publication Year :
2015
Publisher :
The Rockefeller University Press, 2015.

Abstract

In response to viral infections, activated CD8+ T cells differentiate into terminal effector and memory T cells. This developmental process is controlled by the transcriptional repressor Zeb2, which acts downstream of T-bet.<br />ZEB2 is a multi-zinc-finger transcription factor known to play a significant role in early neurogenesis and in epithelial-mesenchymal transition–dependent tumor metastasis. Although the function of ZEB2 in T lymphocytes is unknown, activity of the closely related family member ZEB1 has been implicated in lymphocyte development. Here, we find that ZEB2 expression is up-regulated by activated T cells, specifically in the KLRG1hi effector CD8+ T cell subset. Loss of ZEB2 expression results in a significant loss of antigen-specific CD8+ T cells after primary and secondary infection with a severe impairment in the generation of the KLRG1hi effector memory cell population. We show that ZEB2, which can bind DNA at tandem, consensus E-box sites, regulates gene expression of several E-protein targets and may directly repress Il7r and Il2 in CD8+ T cells responding to infection. Furthermore, we find that T-bet binds to highly conserved T-box sites in the Zeb2 gene and that T-bet and ZEB2 regulate similar gene expression programs in effector T cells, suggesting that T-bet acts upstream and through regulation of ZEB2. Collectively, we place ZEB2 in a larger transcriptional network that is responsible for the balance between terminal differentiation and formation of memory CD8+ T cells.

Details

Language :
English
ISSN :
15409538 and 00221007
Volume :
212
Issue :
12
Database :
OpenAIRE
Journal :
The Journal of Experimental Medicine
Accession number :
edsair.doi.dedup.....28d9791558e97224378158a0f7f0b00a