Human CD4+ central and effector memory T cells produce IL-21: effect on cytokine-driven proliferation of CD4+ T cell subsets
Author(s) -
Tadashi Onoda,
Mizanur Rahman,
Hiromi Nara,
Akemi Araki,
Koki Makabe,
Kouhei Tsumoto,
Izumi Kumagai,
Takamasa Kudo,
Naoto Ishii,
Nobuyuki Tanaka,
Kazuo Sugamura,
Kiyoshi Hayasaka,
Hironobu Asao
Publication year - 2007
Publication title -
international immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.86
H-Index - 134
eISSN - 1460-2377
pISSN - 0953-8178
DOI - 10.1093/intimm/dxm090
Subject(s) - interleukin 21 , t cell , microbiology and biotechnology , cytotoxic t cell , biology , interleukin 4 , cytokine , il 2 receptor , cd40 , interleukin 12 , t helper cell , interleukin 3 , antigen presenting cell , natural killer t cell , memory t cell , immunology , immune system , in vitro , biochemistry
IL-21 regulates certain functions of T cells, B cells, NK cells and dendritic cells. Although activated CD4(+) T cells produce IL-21, data identifying the specific CD4(+) T cell subsets that produce IL-21 are conflicting. In a previous study, mouse IL-21 message was detected in T(H)2, whereas human IL-21 (hIL-21) message was found in both T(H)1 and follicular helper T cells. To identify the IL-21-secreting cell populations in human, we established a hybridoma cell line producing an anti-hIL-21 mAb. Intracellular hIL-21-staining experiments showed that hIL-21 was mainly expressed in activated CD4(+) central memory T cells and in activated CD4(+) effector memory T cells, but not in activated CD4(+) naive T cells. Moreover, IL-21 was produced upon activation by some IFN-gamma-producing T(H)1-polarized cells and some IL-17-producing T(H)17-polarized cells, but not by IL-4-producing T(H)2-polarized cells. These results suggest that specific CD4(+) T cell populations produce IL-21. In the functional analysis, we found that IL-21 significantly enhanced the cytokine-driven proliferation of CD4(+) helper T cells synergistically with IL-7 and IL-15 without T cell activation stimuli. Taken together, IL-21 produced from CD4(+) memory T cells may have a supportive role in the maintenance of CD4(+) T cell subsets.
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