Functionally specialized human CD4<sup>+</sup> T-cell subsets express physicochemically distinct TCRs.

Kasatskaya, Sofya A; Ladell, Kristin; Egorov, Evgeniy S; Miners, Kelly L; Davydov, Alexey N; Metsger, Maria; Staroverov, Dmitry B; Matveyshina, Elena K et al. · Elife · 2020

basic_science · Level V

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Abstract

The organizational integrity of the adaptive immune system is determined by functionally discrete subsets of CD4<sup>+</sup> T cells, but it has remained unclear to what extent lineage choice is influenced by clonotypically expressed T-cell receptors (TCRs). To address this issue, we used a high-throughput approach to profile the αβ TCR repertoires of human naive and effector/memory CD4<sup>+</sup> T-cell subsets, irrespective of antigen specificity. Highly conserved physicochemical and recombinatorial features were encoded on a subset-specific basis in the effector/memory compartment. Clonal tracking further identified forbidden and permitted transition pathways, mapping effector/memory subsets related by interconversion or ontogeny. Public sequences were largely confined to particular effector/memory subsets, including regulatory T cells (Tregs), which also displayed hardwired repertoire features in the naive compartment. Accordingly, these cumulative repertoire portraits establish a link between clonotype fate decisions in the complex world of CD4<sup>+</sup> T cells and the intrinsic properties of somatically rearranged TCRs.

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