Inflammation Program, Roy J. and Lucille A, Carver College of Medicine University of Iowa, Iowa City, IA, 52242, USA.
Department of Internal Medicine, Roy J. and Lucille A, Carver College of Medicine University of Iowa, Iowa City, IA, 52242, USA.
Nat Commun. 2022 Mar 18;13(1):1477. doi: 10.1038/s41467-022-28914-4.
The epigenetic patterns that are established during early thymic development might determine mature T cell physiology and function, but the molecular basis and topography of the genetic elements involved are not fully known. Here we show, using the Cd4 locus as a paradigm for early developmental programming, that DNA demethylation during thymic development licenses a novel stimulus-responsive element that is critical for the maintenance of Cd4 gene expression in effector T cells. We document the importance of maintaining high CD4 expression during parasitic infection and show that by driving transcription, this stimulus-responsive element allows for the maintenance of histone H3K4me3 levels during T cell replication, which is critical for preventing de novo DNA methylation at the Cd4 promoter. A failure to undergo epigenetic programming during development leads to gene silencing during effector T cell replication. Our study thus provides evidence of early developmental events shaping the functional fitness of mature effector T cells.
在早期胸腺发育过程中建立的表观遗传模式可能决定成熟 T 细胞的生理和功能,但涉及的遗传元件的分子基础和拓扑结构尚不完全清楚。在这里,我们以 Cd4 基因座作为早期发育编程的范例,表明胸腺发育过程中的 DNA 去甲基化赋予了一个新的刺激反应元件,该元件对于维持效应 T 细胞中 Cd4 基因表达至关重要。我们记录了在寄生虫感染过程中维持高 CD4 表达的重要性,并表明通过驱动转录,这个刺激反应元件允许在 T 细胞复制过程中维持组蛋白 H3K4me3 水平,这对于防止 Cd4 启动子上新的 DNA 甲基化至关重要。在发育过程中未能进行表观遗传编程会导致效应 T 细胞复制过程中的基因沉默。因此,我们的研究为早期发育事件塑造成熟效应 T 细胞功能适应性提供了证据。