Abstract
NF-κ B is a key transcription factor that dictates the outcome of diverse immune responses. How NF-κ B is regulated by multiple activating receptors that are engaged during natural killer (NK)-target cell contact remains undefined. Here we show that sole engagement of NKG2D, 2B4 or DNAM-1 is insufficient for NF-κ B activation. Rather, cooperation between these receptors is required at the level of Vav1 for synergistic NF-κ B activation. Vav1-dependent synergistic signalling requires a separate PI3K-Akt signal, primarily mediated by NKG2D or DNAM-1, for optimal p65 phosphorylation and NF-κ B activation. Vav1 controls downstream p65 phosphorylation and NF-κ B activation. Synergistic signalling is defective in X-linked lymphoproliferative disease (XLP1) NK cells entailing 2B4 dysfunction and required for p65 phosphorylation by PI3K-Akt signal, suggesting stepwise signalling checkpoint for NF-κ B activation. Thus, our study provides a framework explaining how signals from different activating receptors are coordinated to determine specificity and magnitude of NF-κ B activation and NK cell responses.
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CITATION STYLE
Kwon, H. J., Choi, G. E., Ryu, S., Kwon, S. J., Kim, S. C., Booth, C., … Kim, H. S. (2016). Stepwise phosphorylation of p65 promotes NF-ΰ B activation and NK cell responses during target cell recognition. Nature Communications , 7. https://doi.org/10.1038/ncomms11686
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