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A temporally dynamic Foxp3 autoregulatory transcriptional circuit controls the effector Treg programme

机译:时间动态Foxp3自调节转录电路控制效应子Treg程序

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摘要

Regulatory T cells (Treg) are negative regulators of the immune response; however, it is poorly understood whether and how Foxp3 transcription is induced and regulated in the periphery during T‐cell responses. Using Foxp3‐Timer of cell kinetics and activity (Tocky) mice, which report real‐time Foxp3 expression, we show that the flux of new Foxp3 expressors and the rate of Foxp3 transcription are increased during inflammation. These persistent dynamics of Foxp3 transcription determine the effector Treg programme and are dependent on a Foxp3 autoregulatory transcriptional circuit. Persistent Foxp3 transcriptional activity controls the expression of coinhibitory molecules, including CTLA‐4 and effector Treg signature genes. Using RNA‐seq, we identify two groups of surface proteins based on their relationship to the temporal dynamics of Foxp3 transcription, and we show proof of principle for the manipulation of Foxp3 dynamics by immunotherapy: new Foxp3 flux is promoted by anti‐TNFRII antibody, and high‐frequency Foxp3 expressors are targeted by anti‐OX40 antibody. Collectively, our study dissects time‐dependent mechanisms behind Foxp3‐driven T‐cell regulation and establishes the Foxp3‐Tocky system as a tool to investigate the mechanisms behind T‐cell immunotherapies.
机译:调节性T细胞(Treg)是免疫反应的负性调节剂。然而,人们对T细胞应答过程中是否以及如何在外周诱导和调节Foxp3转录的了解很少。使用报告实时Foxp3表达的细胞动力学和活动性(Tocky)小鼠Foxp3-Timer,我们显示出新的Foxp3表达子的通量和Foxp3转录的速率在炎症过程中增加了。 Foxp3转录的这些持久动力学决定了效应子Treg程序,并取决于Foxp3自调节转录电路。持久的Foxp3转录活性控制共抑制分子的表达,包括CTLA-4和效应Treg签名基因。使用RNA-seq,我们根据表面蛋白与Foxp3转录的时间动态关系确定了两组表面蛋白,并证明了通过免疫疗法操纵Foxp3动力学的原理证明:抗TNFRII抗体促进了新的Foxp3通量,和高频率Foxp3表达子被抗OX40抗体靶向。总体而言,我们的研究剖析了Foxp3驱动的T细胞调节背后的时间依赖性机制,并建立了Foxp3-Tocky系统作为研究T细胞免疫疗法背后机制的工具。

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