Innate Immune Activation of CD4 T Cells in Salmonella-Infected Mice Is Dependent on IL-18
Author(s) -
Aparna Srinivasan,
Rosa-Maria Salazar-Gonzalez,
Michael Jarcho,
Michelle M. Sandau,
Leo Lefrançois,
Stephen J. McSorley
Publication year - 2007
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.178.10.6342
Subject(s) - innate immune system , effector , biology , immunology , salmonella , microbiology and biotechnology , cd8 , spleen , acquired immune system , immune system , innate lymphoid cell , interleukin 12 , secretion , t cell , cytotoxic t cell , in vitro , bacteria , endocrinology , biochemistry , genetics
Production of IFN-gamma by CD4 T cells is generally thought to be mediated by TCR triggering, however, Ag-nonspecific activation of effector CD8 T cells has been reported in infection models. In this study, we demonstrate that Ag-experienced CD4 T cells in the spleen of Salmonella-infected mice acquire the capacity to rapidly secrete IFN-gamma in response to stimulation with bacterial lysate or LPS. This innate responsiveness of T cells was transient and most apparent during, and immediately following, active Salmonella infection. Furthermore, innate T cell production of IFN-gamma in response to bacterial lysate or LPS was Ag independent and could be induced in Listeria-infected mice and in the absence of MHC class II expression. IL-18 was required for maximal innate responsiveness of CD4 T cells in Salmonella-infected mice and for optimal bacterial clearance in vivo. These data demonstrate that CD4 T cells acquire the capacity to respond to innate stimuli during active bacterial infection, a process that may contribute significantly to amplifying effector responses in vivo.
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