Epigenetic networks regulate the transcriptional program in memory and terminally differentiated CD8+ T cells

RM Rodriguez, B Suarez-Alvarez, JL Lavín… - The Journal of …, 2017 - journals.aai.org
RM Rodriguez, B Suarez-Alvarez, JL Lavín, D Mosén-Ansorena, A Baragaño Raneros…
The Journal of Immunology, 2017journals.aai.org
Epigenetic mechanisms play a critical role during differentiation of T cells by contributing to
the formation of stable and heritable transcriptional patterns. To better understand the
mechanisms of memory maintenance in CD8+ T cells, we performed genome-wide analysis
of DNA methylation, histone marking (acetylated lysine 9 in histone H3 and trimethylated
lysine 9 in histone), and gene-expression profiles in naive, effector memory (EM), and
terminally differentiated EM (TEMRA) cells. Our results indicate that DNA demethylation and …
Abstract
Epigenetic mechanisms play a critical role during differentiation of T cells by contributing to the formation of stable and heritable transcriptional patterns. To better understand the mechanisms of memory maintenance in CD8+ T cells, we performed genome-wide analysis of DNA methylation, histone marking (acetylated lysine 9 in histone H3 and trimethylated lysine 9 in histone), and gene-expression profiles in naive, effector memory (EM), and terminally differentiated EM (TEMRA) cells. Our results indicate that DNA demethylation and histone acetylation are coordinated to generate the transcriptional program associated with memory cells. Conversely, EM and TEMRA cells share a very similar epigenetic landscape. Nonetheless, the TEMRA transcriptional program predicts an innate immunity phenotype associated with genes never reported in these cells, including several mediators of NK cell activation (VAV3 and LYN) and a large array of NK receptors (eg, KIR2DL3, KIR2DL4, KIR2DL1, KIR3DL1, KIR2DS5). In addition, we identified up to 161 genes that encode transcriptional regulators, some of unknown function in CD8+ T cells, and that were differentially expressed in the course of differentiation. Overall, these results provide new insights into the regulatory networks involved in memory CD8+ T cell maintenance and T cell terminal differentiation.
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