首页> 美国卫生研究院文献>Frontiers in Immunology >CD4+ T Cell-Receptor Repertoire Diversity is Compromised in the Spleen but Not in the Bone Marrow of Aged Mice Due to Private and Sporadic Clonal Expansions
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CD4+ T Cell-Receptor Repertoire Diversity is Compromised in the Spleen but Not in the Bone Marrow of Aged Mice Due to Private and Sporadic Clonal Expansions

机译:由于私下和零星的克隆扩张CD4 + T细胞受体库多样性在老年小鼠的脾脏而不是骨髓中受到损害

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摘要

Reduction in T cell receptor (TCR) diversity in old age is considered as a major cause for immune complications in the elderly population. Here, we explored the consequences of aging on the TCR repertoire in mice using high-throughput sequencing (TCR-seq). We mapped the TCRβ repertoire of CD4+ T cells isolated from bone marrow (BM) and spleen of young and old mice. We found that TCRβ diversity is reduced in spleens of aged mice but not in their BM. Splenic CD4+ T cells were also skewed toward an effector memory phenotype in old mice, while BM cells preserved their memory phenotype with age. Analysis of Vβ and Jβ gene usage across samples, as well as comparison of CDR3 length distributions, showed no significant age dependent changes. However, comparison of the frequencies of amino-acid (AA) TCRβ sequences between samples revealed repertoire changes that occurred at a more refined scale. The BM-derived TCRβ repertoire was found to be similar among individual mice regardless of their age. In contrast, the splenic repertoire of old mice was not similar to those of young mice, but showed an increased similarity with the BM repertoire. Each old-mouse had a private set of expanded TCRβ sequences. Interestingly, a fraction of these sequences was found also in the BM of the same individual, sharing the same nucleotide sequence. Together, these findings show that the composition and phenotype of the CD4+ T cell BM repertoire are relatively stable with age, while diversity of the splenic repertoire is severely reduced. This reduction is caused by idiosyncratic expansions of tens to hundreds of T cell clonotypes, which dominate the repertoire of each individual. We suggest that these private and abundant clonotypes are generated by sporadic clonal expansions, some of which correspond to pre-existing BM clonotypes. These organ- and age-specific changes of the TCRβ repertoire have implications for understanding and manipulating age-associated immune decline.
机译:老年人中T细胞受体(TCR)多样性的减少被认为是老年人群中免疫并发症的主要原因。在这里,我们使用高通量测序(TCR-seq)探索了衰老对小鼠TCR库的影响。我们绘制了从年轻小鼠和老年小鼠的骨髓和脾脏中分离得到的CD4 + T细胞的TCRβ库。我们发现,TCRβ多样性在衰老小鼠的脾脏中减少,但在其BM中却没有减少。脾脏CD4 + T细胞也偏向老年小鼠的效应记忆表型,而BM细胞则随着年龄的增长而保留其记忆表型。分析样品中Vβ和Jβ基因的用法,以及比较CDR3长度分布,均未发现明显的年龄依赖性变化。然而,样品之间氨基酸(AA)TCRβ序列频率的比较显示,库的变化发生在更精细的规模上。发现BM衍生的TCRβ组成在各个小鼠之间是相似的,而不管其年龄如何。相反,老年小鼠的脾库与幼小鼠不相似,但与BM库的相似性增加。每个老老鼠都有一组私人的扩展的TCRβ序列。有趣的是,在相同个体的BM中也发现了这些序列的一部分,它们共享相同的核苷酸序列。总之,这些发现表明,CD4 + T细胞BM库的组成和表型随年龄增长相对稳定,而脾库的多样性却大大降低。这种减少是由于数十个T细胞克隆型的异质性扩展引起的,而这种扩展主导着每个人的全部功能。我们建议这些私人和丰富的克隆型是由零星的克隆扩展产生的,其中一些对应于先前存在的BM克隆型。 TCRβ组成部分的这些器官和年龄特定的变化对于理解和操纵与年龄相关的免疫下降具有影响。

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