Effector CD8 T cells dedifferentiate into long-lived memory cells

效应器 生物 细胞毒性T细胞 CD8型 白细胞介素21 细胞生物学 DNA甲基化 白细胞介素2受体 表观遗传学 免疫学 免疫系统 遗传学 基因表达 体外 基因
作者
Ben Youngblood,J. Scott Hale,Haydn Kissick,Eunseon Ahn,Xiaojin Xu,Andreas Wieland,Koichi Araki,Erin E. West,Hazem E. Ghoneim,Yiping Fan,Pranay Dogra,Carl W. Davis,Bogumila T. Konieczny,Rustom Antia,Xiaodong Cheng,Rafi Ahmed
出处
期刊:Nature [Nature Portfolio]
卷期号:552 (7685): 404-409 被引量:429
标识
DOI:10.1038/nature25144
摘要

Memory CD8 T cells that circulate in the blood and are present in lymphoid organs are an essential component of long-lived T cell immunity. These memory CD8 T cells remain poised to rapidly elaborate effector functions upon re-exposure to pathogens, but also have many properties in common with naive cells, including pluripotency and the ability to migrate to the lymph nodes and spleen. Thus, memory cells embody features of both naive and effector cells, fuelling a long-standing debate centred on whether memory T cells develop from effector cells or directly from naive cells. Here we show that long-lived memory CD8 T cells are derived from a subset of effector T cells through a process of dedifferentiation. To assess the developmental origin of memory CD8 T cells, we investigated changes in DNA methylation programming at naive and effector cell-associated genes in virus-specific CD8 T cells during acute lymphocytic choriomeningitis virus infection in mice. Methylation profiling of terminal effector versus memory-precursor CD8 T cell subsets showed that, rather than retaining a naive epigenetic state, the subset of cells that gives rise to memory cells acquired de novo DNA methylation programs at naive-associated genes and became demethylated at the loci of classically defined effector molecules. Conditional deletion of the de novo methyltransferase Dnmt3a at an early stage of effector differentiation resulted in reduced methylation and faster re-expression of naive-associated genes, thereby accelerating the development of memory cells. Longitudinal phenotypic and epigenetic characterization of the memory-precursor effector subset of virus-specific CD8 T cells transferred into antigen-free mice revealed that differentiation to memory cells was coupled to erasure of de novo methylation programs and re-expression of naive-associated genes. Thus, epigenetic repression of naive-associated genes in effector CD8 T cells can be reversed in cells that develop into long-lived memory CD8 T cells while key effector genes remain demethylated, demonstrating that memory T cells arise from a subset of fate-permissive effector T cells.
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