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Transcription factor regulation of CD8+ T-cell memory and exhaustion.

机译:CD8 + T细胞记忆和衰竭的转录因子调节。

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摘要

During an infection, antigen-specific CD8+ T cells undergo numerous cellular and transcriptional changes as they develop from naive T cells into effector and memory cells. However, when the antigen persists in a chronic infection, the cellular programs governing effector and memory development are influenced by chronic stimulation, and dysfunctional or exhausted CD8+ T cells are generated. Recently, exhausted CD8+ T cells were found to differ dramatically from naive and functional memory CD8+ T cells on a transcriptional level, demonstrating that exposure to chronic antigen can impact T cells at a fundamental level. While transcriptional changes in CD8+ T cells during memory development is currently a topic of particular interest, the transcriptional changes related to exhaustion and other forms of T-cell dysfunction have received less attention. New computational methods are not only uncovering important transcription factors in these developmental processes but are also going further to define and connect these transcription factors into transcriptional modules that work in parallel to control cell fate and state. Understanding the molecular processes behind the development of CD8+ T-cell memory and exhaustion should not only increase our understanding of the immune system but also could reveal therapeutic targets and treatments for infectious and immunological diseases. Here, we provide a basic overview of acute and chronic viral infections and the transcription factors known to influence the development of virus-specific T cells in both settings. We also discuss recent innovations in genomic and computational tools that could be used to enhance the way we understand the development of T-cell responses to infectious disease.
机译:在感染过程中,抗原特异性CD8 + T细胞从幼稚T细胞发展成效应细胞和记忆细胞时,会经历许多细胞和转录变化。但是,当抗原在慢性感染中持续存在时,控制效应子和记忆发育的细胞程序会受到慢性刺激的影响,并且会产生功能失调或衰竭的CD8 + T细胞。最近,发现精疲力竭的CD8 + T细胞在转录水平上与幼稚和功能性记忆CD8 + T细胞显着不同,这表明暴露于慢性抗原可从根本上影响T细胞。尽管目前在记忆发育过程中CD8 + T细胞的转录变化是一个特别令人关注的话题,但与疲劳和其他形式的T细胞功能障碍有关的转录变化却受到的关注较少。新的计算方法不仅在这些发育过程中发现了重要的转录因子,而且还将进一步定义和连接这些转录因子,使其与控制细胞命运和状态的转录模块并行运行。了解CD8 + T细胞记忆和力竭发育背后的分子过程,不仅应该增加我们对免疫系统的了解,而且可以揭示传染性和免疫性疾病的治疗靶标和治疗方法。在这里,我们提供了急性和慢性病毒感染以及已知在两种环境中都会影响病毒特异性T细胞发育的转录因子的基本概述。我们还将讨论基因组和计算工具方面的最新创新,这些创新可用于增强我们理解T细胞对传染病反应的方式。

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