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CCR6 is expressed on an IL-10-producing, autoreactive memory T cell population with context-dependent regulatory function

Authors :
Rivino, Laura
Gruarin, Paola
Häringer, Barbara
Steinfelder, Svenja
Lozza, Laura
Steckel, Bodo
Weick, Anja
Sugliano, Elisa
Jarrossay, David
Kühl, Anja A.
Loddenkemper, Christoph
Abrignani, Sergio
Sallusto, Federica
Lanzavecchia, Antonio
Geginat, Jens
Rivino, Laura
Gruarin, Paola
Häringer, Barbara
Steinfelder, Svenja
Lozza, Laura
Steckel, Bodo
Weick, Anja
Sugliano, Elisa
Jarrossay, David
Kühl, Anja A.
Loddenkemper, Christoph
Abrignani, Sergio
Sallusto, Federica
Lanzavecchia, Antonio
Geginat, Jens
Publication Year :
2019

Abstract

Interleukin (IL)-10 produced by regulatory T cell subsets is important for the prevention of autoimmunity and immunopathology, but little is known about the phenotype and function of IL-10–producing memory T cells. Human CD4+CCR6+ memory T cells contained comparable numbers of IL-17– and IL-10–producing cells, and CCR6 was induced under both Th17-promoting conditions and upon tolerogenic T cell priming with transforming growth factor (TGF)–. In normal human spleens, the majority of CCR6+ memory T cells were in the close vicinity of CCR6+ myeloid dendritic cells (mDCs), and strikingly, some of them were secreting IL-10 in situ. Furthermore, CCR6+ memory T cells produced suppressive IL-10 but not IL-2 upon stimulation with autologous immature mDCs ex vivo, and secreted IL-10 efficiently in response to suboptimal T cell receptor (TCR) stimulation with anti-CD3 antibodies. However, optimal TCR stimulation of CCR6+ T cells induced expression of IL-2, interferon-, CCL20, and CD40L, and autoreactive CCR6+ T cell lines responded to various recall antigens. Notably, we isolated autoreactive CCR6+ T cell clones with context-dependent behavior that produced IL-10 with autologous mDCs alone, but that secreted IL-2 and proliferated upon stimulation with tetanus toxoid. We propose the novel concept that a population of memory T cells, which is fully equipped to participate in secondary immune responses upon recognition of a relevant recall antigen, contributes to the maintenance of tolerance under steady-state conditions.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1156712190
Document Type :
Electronic Resource