Clonal Evolution of CD8+T Cell Responses against Latent Viruses: Relationship among Phenotype, Localization, and Function
Author(s) -
Ester B. M. Remmerswaal,
Paul L. Klarenbeek,
Nuno L. Alves,
Marieke E. Doorenspleet,
Barbera D. C. van Schaik,
R. E. Esveldt,
Mirza M. Idu,
Ester M. M. van Leeuwen,
Nelly van der Bom-Baylon,
Antoine H. C. van Kampen,
Sven D. Koch,
Hanspeter Pircher,
Fréderike J. Bemelman,
Anja ten Brinke,
Frank Baas,
Ineke J. M. ten Berge,
René A. W. van Lier,
Niek de Vries
Publication year - 2014
Publication title -
journal of virology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.617
H-Index - 292
eISSN - 1070-6321
pISSN - 0022-538X
DOI - 10.1128/jvi.02003-14
Subject(s) - biology , cd8 , population , phenotype , cytotoxic t cell , effector , antigen , flow cytometry , human cytomegalovirus , interleukin 7 receptor , t cell , immunology , virology , microbiology and biotechnology , virus , il 2 receptor , genetics , immune system , gene , in vitro , demography , sociology
Human cytomegalovirus (hCMV) infection is characterized by a vast expansion of resting effector-type virus-specific T cells in the circulation. In mice, interleukin-7 receptor α (IL-7Rα)-expressing cells contain the precursors for long-lived antigen-experienced CD8(+) T cells, but it is unclear if similar mechanisms operate to maintain these pools in humans. Here, we studied whether IL-7Rα-expressing cells obtained from peripheral blood (PB) or lymph nodes (LNs) sustain the circulating effector-type hCMV-specific pool. Using flow cytometry and functional assays, we found that the IL-7Rα(+) hCMV-specific T cell population comprises cells that have a memory phenotype and lack effector features. We used next-generation sequencing of the T cell receptor to compare the clonal repertoires of IL-7Rα(+) and IL-7Rα(-) subsets. We observed limited overlap of clones between these subsets during acute infection and after 1 year. When we compared the hCMV-specific repertoire between PB and paired LNs, we found many identical clones but also clones that were exclusively found in either compartment. New clones that were found in PB during antigenic recall were only rarely identical to the unique LN clones. Thus, although PB IL-7Rα-expressing and LN hCMV-specific CD8(+) T cells show typical traits of memory-type cells, these populations do not seem to contain the precursors for the novel hCMV-specific CD8(+) T cell pool during latency or upon antigen recall. IL-7Rα(+) PB and LN hCMV-specific memory cells form separate virus-specific compartments, and precursors for these novel PB hCMV-specific CD8(+) effector-type T cells are possibly located in other secondary lymphoid tissues or are being recruited from the naive CD8(+) T cell pool.
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