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Published on: June 22, 2016
Lumpy skin disease virus LSDV001 protein positively regulates inflammatory response by promoting assembly of the
Yu-Lin Yang1, Huai-Jie Jia1, Meng-Yao Sun1
1State Key Laboratory for Animal Disease Control and Prevention, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences; College of Veterinary Medicine, Lanzhou University; Gansu Province Research Center for Basic Disciplines of Pathogen Biology, Lanzhou, China.
Abstract:
Lumpy skin disease (LSD) is an emerging transboundary viral disease of livestock caused by the lumpy skin disease virus (LSDV), which has caused substantial economic losses and negatively impacted veterinary public health. The underlying pathogenic mechanisms remain poorly understood, limiting the effective prevention and control of LSD. Here, we identify LSDV-encoded protein LSDV001 as a positive regulator of IL-1β- and TNFα-triggered signaling. LSDV001 interacts with TAK1 and TAB2/3 and promotes assembly of the TAK1-TAB2/3 complex. This leads to IKK-dependent activation of the transcription factor NF-κB and induction of downstream inflammatory cytokines. LSDV001-deficient virus (LSDVΔ001) has attenuated the ability to activate NF-κB and induce the expression of inflammatory cytokines. Infection with LSDVΔ001 leads to smaller skin nodules and reduced inflammation compared to wild-type LSDV. Our findings suggest that LSDV001 acts as a key virulence factor of LSDV by promoting excessive inflammatory response upon infection.
Importance:
Lumpy skin disease is a current global concern caused by the lumpy skin disease virus (LSDV), for which there is a lack of safe and efficient vaccines. In this study, we report that LSDV001 protein potentiates IL-1β- and TNFα-triggered IKK-dependent activation of NF-κB and transcription of inflammatory cytokines. Mechanistically, LSDV001 enhances inflammatory response by interacting with TAK1 and TAB2/3 to promote TAK1-TAB2/3 complex formation. We further demonstrate that LSDV001 deficiency attenuates LSDV-triggered inflammatory response and pathogenesis. Our findings identify a new virulence factor and reveal a novel pathogenic mechanism of LSDV by which LSDV001 enhances inflammatory response.
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