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1.
FASEB J ; 32(10): 5238-5249, 2018 10.
Article in English | MEDLINE | ID: mdl-29688809

ABSTRACT

Ubiquitination and deubiquitination are important post-translational regulatory mechanisms responsible for fine tuning the antiviral signaling. In this study, we identified a deubiquitinase, the ubiquitin-specific peptidase 7/herpes virus associated ubiquitin-specific protease (USP7/HAUSP) as an important negative modulator of virus-induced signaling. Overexpression of USP7 suppressed Sendai virus and polyinosinic-polycytidylic acid and poly(deoxyadenylic-deoxythymidylic)-induced ISRE and IFN-ß activation, and enhanced virus replication. Knockdown or knockout of endogenous USP7 expression had the opposite effect. Coimmunoprecipitation assays showed that USP7 physically interacted with tripartite motif (TRIM)27. This interaction was enhanced after SeV infection. In addition, TNF receptor-associated factor family member-associated NF-kappa-B-binding kinase (TBK)-1 was pulled down in the TRIM27-USP7 complex. Overexpression of USP7 promoted the ubiquitination and degradation of TBK1 through promoting the stability of TRIM27. Knockout of endogenous USP7 led to enhanced TRIM27 degradation and reduced TBK1 ubiquitination and degradation, resulting in enhanced type I IFN signaling. Our findings suggest that USP7 acts as a negative regulator in antiviral signaling by stabilizing TRIM27 and promoting the degradation of TBK1.-Cai, J., Chen, H.-Y., Peng, S.-J., Meng, J.-L., Wang, Y., Zhou, Y., Qian, X.-P., Sun, X.-Y., Pang, X.-W., Zhang, Y., Zhang, J. USP7-TRIM27 axis negatively modulates antiviral type I IFN signaling.


Subject(s)
DNA-Binding Proteins/metabolism , Interferon Type I/metabolism , Nuclear Proteins/metabolism , Respirovirus Infections/metabolism , Sendai virus/metabolism , Signal Transduction , Ubiquitin-Specific Peptidase 7/metabolism , DNA-Binding Proteins/genetics , HEK293 Cells , HeLa Cells , Humans , Interferon Type I/genetics , Nuclear Proteins/genetics , Proteolysis , Respirovirus Infections/genetics , Sendai virus/genetics , Ubiquitin-Specific Peptidase 7/genetics , Ubiquitination
2.
Viruses ; 8(5)2016 05 21.
Article in English | MEDLINE | ID: mdl-27213432

ABSTRACT

During virus infection, the cascade signaling pathway that leads to the production of proinflammatory cytokines is controlled at multiple levels to avoid detrimental overreaction. HACE1 has been characterized as an important tumor suppressor. Here, we identified HACE1 as an important negative regulator of virus-triggered type I IFN signaling. Overexpression of HACE1 inhibited Sendai virus- or poly (I:C)-induced signaling and resulted in reduced IFNB1 production and enhanced virus replication. Knockdown of HACE1 expression exhibited the opposite effects. Ubiquitin E3 ligase activity of the dead mutant HACE1/C876A had a comparable inhibitory function as WT HACE1, suggesting that the suppressive function of HACE1 on virus-induced signaling is independent of its E3 ligase activity. Further study indicated that HACE1 acted downstream of MAVS and upstream of TBK1. Mechanistic studies showed that HACE1 exerts its inhibitory role on virus-induced signaling by disrupting the MAVS-TRAF3 complex. Therefore, we uncovered a novel function of HACE1 in innate immunity regulation.


Subject(s)
Adaptor Proteins, Signal Transducing/metabolism , Interferon-beta/antagonists & inhibitors , Sendai virus/immunology , Signal Transduction , TNF Receptor-Associated Factor 3/metabolism , Ubiquitin-Protein Ligases/metabolism , Cell Line , Humans , Poly I-C , Polynucleotides/immunology , Protein Multimerization , Virus Replication
3.
J Immunol ; 192(10): 4758-64, 2014 May 15.
Article in English | MEDLINE | ID: mdl-24729608

ABSTRACT

VISA (also known as MAVS, Cardif, IPS-1) is the essential adaptor protein for virus-induced activation of IFN regulatory factors 3 and 7 and production of type I IFNs. Understanding the regulatory mechanisms for VISA will provide detailed insights into the positive or negative regulation of innate immune responses. In this study, we identified Smad ubiquitin regulatory factor (Smurf) 2, one of the Smad ubiquitin regulator factor proteins, as an important negative regulator of virus-triggered type I IFN signaling, which targets at the VISA level. Overexpression of Smurf2 inhibits virus-induced IFN-ß and IFN-stimulated response element activation. The E3 ligase defective mutant Smurf2/C716A loses the ability to suppress virus-induced type I IFN signaling, suggesting that the negative regulation is dependent on the ubiquitin E3 ligase activity of Smurf2. Further studies demonstrated that Smurf2 interacted with VISA and targeted VISA for K48-linked ubiquitination, which promoted the degradation of VISA. Consistently, knockout or knockdown of Smurf2 expression therefore promoted antiviral signaling, which was correlated with the increase in protein stability of VISA. Our findings suggest that Smurf2 is an important nonredundant negative regulator of virus-triggered type I IFN signaling by targeting VISA for K48-linked ubiquitination and degradation.


Subject(s)
Adaptor Proteins, Signal Transducing/immunology , DEAD-box RNA Helicases/immunology , Proteolysis , Respirovirus Infections/immunology , Sendai virus/immunology , Ubiquitin-Protein Ligases/immunology , Ubiquitination/immunology , Adaptor Proteins, Signal Transducing/genetics , Adaptor Proteins, Signal Transducing/metabolism , Animals , DEAD Box Protein 58 , DEAD-box RNA Helicases/genetics , DEAD-box RNA Helicases/metabolism , HeLa Cells , Humans , Interferon Type I/genetics , Interferon Type I/immunology , Mice , Receptors, Immunologic , Respirovirus Infections/genetics , Sendai virus/genetics , Ubiquitin-Protein Ligases/genetics , Ubiquitin-Protein Ligases/metabolism , Ubiquitination/genetics
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