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A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
A novel FcγRIIa-TRIM54-STAT2 axis negatively regulates type I interferon signaling and promotes viral susceptibility
Xiao-Qiu Dai1, Shenghao Hua1,2, Lian Xue1
1School of Basic Medical Sciences, Soochow University, Suzhou, China.
Abstract:
While adaptive humoral immunity and type I interferon (IFN-I) responses are known to cross-regulate each other during viral infection, the mechanisms by which antibodies (Abs) or immune complexes (ICs) modulate IFN-I signaling in immune cells remain unclear. Here, using plate-coated human IgG (cIgG) as an antigen-independent IC mimic, we show that FcγRIIa cross-linking in human blood monocytes induces the expression of TRIM54, an E3 ubiquitin ligase previously thought to be constitutively expressed only in muscle tissue. Mechanistically, TRIM54 binds to and promotes the ubiquitination of the transcriptional activator STAT2, thereby dampening the expression of many IFN-stimulated genes. This inhibitory role is functionally corroborated by a positive correlation between elevated TRIM54 levels and enhanced cellular permissiveness to infection by vesicular stomatitis virus, Dengue virus, and/or Sendai virus, in cIgG-primed human monocytes, and monocytic cell lines with genetically modulated TRIM54 expression. Clinically, elevated TRIM54 expression is detected in circulating monocytes from pediatric patients with Epstein-Barr virus-induced infectious mononucleosis. Together, our findings define a previously unrecognized FcγRIIa-TRIM54-STAT2 signaling axis through which virus-specific Abs-particularly at sub-neutralizing concentrations-can attenuate the IFN-I response in innate immune cells. This axis may also provide a mechanistic explanation for Ab-dependent enhancement of viral infection.
Importance:
The long-standing question of how antigen-antibody immunocomplexes regulate type I interferon (IFN) signaling in immune cells remains unanswered. Our study uncovers a novel pathway for negative regulation of IFN-I signaling via the FcγRIIa-TRIM54-STAT2 axis in human monocytes. The novel concept will provide new insights into cross-regulation between humoral immunity and IFN response, and may provide important clues for the molecular mechanisms behind antibody-dependent enhancement of virus infection.
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