| Literature DB >> 29669249 |
Dapeng Wang1, Huitian Diao1, Adam J Getzler1, Walter Rogal1, Megan A Frederick1, Justin Milner2, Bingfei Yu2, Shane Crotty3, Ananda W Goldrath2, Matthew E Pipkin4.
Abstract
T cell receptor (TCR) stimulation of naive CD8+ T cells initiates reprogramming of cis-regulatory landscapes that specify effector and memory cytotoxic T lymphocyte (CTL) differentiation. We mapped regions of hyper-accessible chromatin in naive cells during TCR stimulation and discovered that the transcription factor (TF) Runx3 promoted accessibility to memory CTL-specific cis-regulatory regions before the first cell division and was essential for memory CTL differentiation. Runx3 was specifically required for accessibility to regions highly enriched with IRF, bZIP and Prdm1-like TF motifs, upregulation of TFs Irf4 and Blimp1, and activation of fundamental CTL attributes in early effector and memory precursor cells. Runx3 ensured that nascent CTLs differentiated into memory CTLs by preventing high expression of the TF T-bet, slowing effector cell proliferation, and repressing terminal CTL differentiation. Runx3 overexpression enhanced memory CTL differentiation during iterative infections. Thus, Runx3 governs chromatin accessibility during TCR stimulation and enforces the memory CTL developmental program.Entities:
Keywords: Runx-family transcription factor; chromatin accessibility; epigenetic reprogramming; memory CTL differentiation; pioneer transcription factor
Mesh:
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Year: 2018 PMID: 29669249 PMCID: PMC6750808 DOI: 10.1016/j.immuni.2018.03.028
Source DB: PubMed Journal: Immunity ISSN: 1074-7613 Impact factor: 31.745