Constitutive MHC class I molecules negatively regulate TLR-triggered inflammatory responses via the Fps–SHP-2 pathway

S Xu, X Liu, Y Bao, X Zhu, C Han, P Zhang… - Nature …, 2012 - nature.com
S Xu, X Liu, Y Bao, X Zhu, C Han, P Zhang, X Zhang, W Li, X Cao
Nature immunology, 2012nature.com
The molecular mechanisms that fine-tune Toll-like receptor (TLR)-triggered innate
inflammatory responses remain to be fully elucidated. Major histocompatibility complex
(MHC) molecules can mediate reverse signaling and have nonclassical functions. Here we
found that constitutively expressed membrane MHC class I molecules attenuated TLR-
triggered innate inflammatory responses via reverse signaling, which protected mice from
sepsis. The intracellular domain of MHC class I molecules was phosphorylated by the …
Abstract
The molecular mechanisms that fine-tune Toll-like receptor (TLR)-triggered innate inflammatory responses remain to be fully elucidated. Major histocompatibility complex (MHC) molecules can mediate reverse signaling and have nonclassical functions. Here we found that constitutively expressed membrane MHC class I molecules attenuated TLR-triggered innate inflammatory responses via reverse signaling, which protected mice from sepsis. The intracellular domain of MHC class I molecules was phosphorylated by the kinase Src after TLR activation, then the tyrosine kinase Fps was recruited via its Src homology 2 domain to phosphorylated MHC class I molecules. This led to enhanced Fps activity and recruitment of the phosphatase SHP-2, which interfered with TLR signaling mediated by the signaling molecule TRAF6. Thus, constitutive MHC class I molecules engage in crosstalk with TLR signaling via the Fps–SHP-2 pathway and control TLR-triggered innate inflammatory responses.
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