Prior TLR5 induction in human T cells results in a transient potentiation of subsequent TCR-induced cytokine production

•Activation of TLR5, but not TLR2, potentiates ensuing TCR-induced cytokine release.•The effects of TLR5 on TCR-mediated cytokine production lasts for 24–36h.•Prior TLR5 induction enhances TCR-mediated AKT activation.•TLR5 pretreatments suppresses TCR-induced Lck and LAT induction. Activation of TLR...

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Veröffentlicht in:Molecular immunology 2014-02, Vol.57 (2), p.161-170
Hauptverfasser: Tremblay, Mikaela M., Bilal, Mahmood Y., Houtman, Jon C.D.
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Sprache:eng
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Zusammenfassung:•Activation of TLR5, but not TLR2, potentiates ensuing TCR-induced cytokine release.•The effects of TLR5 on TCR-mediated cytokine production lasts for 24–36h.•Prior TLR5 induction enhances TCR-mediated AKT activation.•TLR5 pretreatments suppresses TCR-induced Lck and LAT induction. Activation of TLRs by components required for pathogen viability results in increased inflammation and an enhanced immune response to infection. Unlike their effects on other immune cells, TLR activation in the absence of T cell antigen receptor (TCR) induction has little effect on T cell activity. Instead, the simultaneous induction of TLR and TCR results in increased cytokine release compared to TCR treatment alone. Thus, the current model states that TLRs alter T cell function only if activated at the same time as the TCR. In this study, we tested the novel hypothesis that prior TLR induction can also alter TCR-mediated functions. We found that human T cells responded to ligands for TLR2 and TLR5. However, only prior TLR5 induction potentiated subsequent TCR-mediated cytokine production in human T cells. This response required at least 24h of TLR5 induction and lasted for approximately 24–36h after removal of a TLR5 ligand. Interestingly, prior TLR5 induction enhanced TCR-mediated activation of Akt without increasing Lck, LAT or ERK kinase phosphorylation. Together, our studies show that TLR5 induction leads to a transient increase in the sensitivity of T cells to TCR stimulation by selectively enhancing TCR-mediated Akt function, highlighting that timeframe when TLR5 can potentiate TCR-induced downstream functions are significantly longer that previously appreciated.
ISSN:0161-5890
1872-9142
DOI:10.1016/j.molimm.2013.09.002