Publication | Closed Access
Functional heterogeneity of human memory CD4 <sup>+</sup> T cell clones primed by pathogens or vaccines
327
Citations
25
References
2014
Year
Polarized ResponsesAdaptive Immune SystemT-regulatory CellImmunologyImmune RegulationAntigen ProcessingFunctional HeterogeneityCd4 T Cell ResponsesT CellsPolarized T CellImmune SystemImmunotherapyImmunological MemoryAutoimmune DiseaseAutoimmunityT Cell ImmunityHumoral ImmunityCell BiologyVaccinationImmune Cell DevelopmentPathogenesisCellular Immune ResponseMedicine
Distinct types of CD4(+) T cells protect the host against different classes of pathogens. However, it is unclear whether a given pathogen induces a single type of polarized T cell. By combining antigenic stimulation and T cell receptor deep sequencing, we found that human pathogen- and vaccine-specific T helper 1 (T(H)1), T(H)2, and T(H)17 memory cells have different frequencies but comparable diversity and comprise not only clones polarized toward a single fate, but also clones whose progeny have acquired multiple fates. Single naïve T cells primed by a pathogen in vitro could also give rise to multiple fates. Our results unravel an unexpected degree of interclonal and intraclonal functional heterogeneity of the human T cell response and suggest that polarized responses result from preferential expansion rather than priming.
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