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A central role for mTOR kinase in homeostatic proliferation induced CD8+ T cell memory and tumor immunity.


ABSTRACT: The cell-intrinsic mechanisms guiding naive CD8+ T cells for clonal expansion and memory generation via homeostatic proliferation (HP) are unclear. Here, we have shown that HP of naive CD8+ T cells requires IL-7-, but not IL-15-induced mTOR kinase activation. HP-induced mTOR enhances transcription factor T-bet for functional maturation and CD122 expression, which sensitizes for an IL-15-dependent memory transition by favoring transcription factor Eomesodermin over T-bet. Inhibition of mTOR blocks T-bet and CD122 expression but preserves memory in an IL-15-independent manner by promoting Eomesodermin expression. The ability of rapamycin to augment HP-induced memory was cell-intrinsic given that silencing mTOR in CD8+ T cells generated identical outcomes. Strikingly, HP-induced CD8+ T cell memory generated by IL-15-dependent or -independent mechanisms demonstrated identical tumor efficacy. These results indicate a central role for mTOR in HP-induced CD8+ T cell responses and demonstrate the importance for CD8+ memory in HP-induced tumor efficacy.

SUBMITTER: Li Q 

PROVIDER: S-EPMC3083826 | biostudies-literature | 2011 Apr

REPOSITORIES: biostudies-literature

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A central role for mTOR kinase in homeostatic proliferation induced CD8+ T cell memory and tumor immunity.

Li Qingsheng Q   Rao Rajesh R RR   Araki Koichi K   Pollizzi Kristen K   Odunsi Kunle K   Powell Jonathan D JD   Shrikant Protul A PA  

Immunity 20110401 4


The cell-intrinsic mechanisms guiding naive CD8+ T cells for clonal expansion and memory generation via homeostatic proliferation (HP) are unclear. Here, we have shown that HP of naive CD8+ T cells requires IL-7-, but not IL-15-induced mTOR kinase activation. HP-induced mTOR enhances transcription factor T-bet for functional maturation and CD122 expression, which sensitizes for an IL-15-dependent memory transition by favoring transcription factor Eomesodermin over T-bet. Inhibition of mTOR block  ...[more]

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