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CD4+ Virtual Memory: Antigen-inexperienced T cells reside in the naïve regulatory and memory T cell compartments at similar frequencies implications for autoimmunity

机译:CD4 +虚拟记忆:缺乏抗原的T细胞以相似的频率位于幼稚调节和记忆T细胞区隔中对自身免疫有影响

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摘要

It is widely accepted that central and effector memory CD4+ T cells originate from naïve T cells after they have encountered their cognate antigen in the setting of appropriate co-stimulation. However, if this were true the diversity of T cell receptor (TCR) sequences within the naïve T cell compartment should be far greater than that of the memory T cell compartment, which is not supported by TCR sequencing data. Here we demonstrate that aged mice with far fewer naïve T cells, respond to the model antigen, hen eggwhite lysozyme (HEL), by utilizing the same TCR sequence as their younger counterparts. CD4+ T cell repertoire analysis of highly purified T cell populations from naïve animals revealed that the HEL-specific clones displayed effector and central “memory” cell surface phenotypes even prior to having encountered their cognate antigen. Furthermore, HEL-inexperienced CD4+ T cells were found to reside within the naïve, regulatory, central memory, and effector memory T cell populations at similar frequencies and the majority of the CD4+ T cells within the regulatory and memory populations were unexpanded. These findings support a new paradigm for CD4+ T cell maturation in which a specific clone can undergo a differentiation process to exhibit a “memory” or regulatory phenotype without having undergone a clonal expansion event. It also demonstrates that a foreign-specific T cell is just as likely to reside within the regulatory T cell compartment as it would the naïve compartment, arguing against the specificity of the regulatory T cell compartment being skewed towards self-reactive T cell clones. Finally, we demonstrate that the same set of foreign and autoreactive CD4+ T cell clones are repetitively generated throughout adulthood. The latter observation argues against T cell-depleting strategies or autologous stem cell transplantation as therapies for autoimmunity-as the immune system has the ability to regenerate pathogenic clones.
机译:众所周知,中枢和效应记忆CD4 + T细胞是在适当的共刺激条件下遇到同源抗原后才从原始T细胞起源的。但是,如果这是真的,那么纯真的T细胞区室中T细胞受体(TCR)序列的多样性应远大于记忆T细胞区室,TCR测序数据不支持这种多样性。在这里,我们证明了幼稚的T细胞少得多的衰老小鼠通过利用与年轻同龄小鼠相同的TCR序列对模型抗原,蛋清溶菌酶(HEL)产生反应。对来自纯朴动物的高纯度T细胞种群的CD4 + T细胞库分析表明,HEL特异性克隆甚至在遇到同源抗原之前就显示了效应细胞和中央“记忆”细胞表面表型。此外,发现没有HEL经验的CD4 + T细胞以相似的频率存在于幼稚,调节,中央记忆和效应记忆T细胞群中,并且大多数CD4 + 调节和记忆种群内的T细胞未扩增。这些发现支持了CD4 + T细胞成熟的新范式,其中特定克隆可以经历分化过程以表现出“记忆”或调控表型,而没有经历克隆扩增事件。这也证明了外源特异性T细胞与幼稚的隔室一样可能存在于调节性T细胞隔室中,这表明调节性T细胞隔室的特异性偏向于自我反应性T细胞克隆。最后,我们证明了在成年期重复生成相同组的异源和自身反应性CD4 + T细胞克隆。后者的观察反对T细胞消耗策略或自体干细胞移植作为自身免疫疗法,因为免疫系统具有再生病原体克隆的能力。

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