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August 25, 2014Proceedings of the National Academy of Sciences792 citationsOpen Access

Diversity and clonal selection in the human T-cell repertoire

QQQian QiYLYi LiuYCYong Cheng

Key Points

  • Quantify the lower bound of human T-cell receptor beta diversity and determine how aging alters repertoire richness and clonal distribution across naïve and memory T-cell subsets.
  • Performed next-generation sequencing of TCR beta sequences in naïve and memory CD4 and CD8 T cells isolated from young and elderly individuals.
  • Utilized nonparametric statistical estimators and a modified Gini-Simpson index to calculate repertoire richness and quantify clonal size inequality.
  • Naïve CD4 and CD8 T-cell repertoires in young adults maintain a minimal lower bound of 100 million unique TCR beta sequences.
  • Naïve repertoire richness declined modestly by two- to fivefold in healthy elderly individuals, while memory CD4 and CD8 T-cell repertoire contraction was even less pronounced.
  • Clonal size inequality increased markedly with age, driven by large naïve T-cell clones distinct from memory populations that reflect uneven homeostatic proliferation.

Abstract

T-cell receptor (TCR) diversity, a prerequisite for immune system recognition of the universe of foreign antigens, is generated in the first two decades of life in the thymus and then persists to an unknown extent through life via homeostatic proliferation of naïve T cells. We have used next-generation sequencing and nonparametric statistical analysis to estimate a lower bound for the total number of different TCR beta (TCRB) sequences in human repertoires. We arrived at surprisingly high minimal estimates of 100 million unique TCRB sequences in naïve CD4 and CD8 T-cell repertoires of young adults. Naïve repertoire richness modestly declined two- to fivefold in healthy elderly. Repertoire richness contraction with age was even less pronounced for memory CD4 and CD8 T cells. In contrast, age had a major impact on the inequality of clonal sizes, as estimated by a modified Gini-Simpson index clonality score. In particular, large naïve T-cell clones that were distinct from memory clones were found in the repertoires of elderly individuals, indicating uneven homeostatic proliferation without development of a memory cell phenotype. Our results suggest that a highly diverse repertoire is maintained despite thymic involution; however, peripheral fitness selection of T cells leads to repertoire perturbations that can influence the immune response in the elderly.

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Cite This Study

Qi et al. (2014) studied this question.

synapsesocial.com/papers/69dd226f4006ebb8efe53134https://doi.org/10.1073/pnas.1409155111
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