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IL-6/STAT3 axis is hijacked by GCRV to facilitate viral replication via suppressing type Ⅰ IFN signaling.

Authors :
Hu, Liang
Xu, Yang
Zhang, Qiu-Shi
Chen, Xiao-Ying
Li, Chun
Chen, Rui
Hou, Guo-Li
Lv, Zhao
Xiao, Tiao-Yi
Zou, Jun
Wang, Hong-Quan
Li, Jun-Hua
Source :
Fish & Shellfish Immunology. Jun2024, Vol. 149, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Grass carp reovirus (GCRV) infections and hemorrhagic disease (GCHD) outbreaks are typically seasonally periodic and temperature-dependent, yet the molecular mechanism remains unclear. Herein, we depicted that temperature-dependent IL-6/STAT3 axis was exploited by GCRV to facilitate viral replication via suppressing type Ⅰ IFN signaling. Combined multi-omics analysis and qPCR identified IL-6, STAT3, and IRF3 as potential effector molecules mediating GCRV infection. Deploying GCRV challenge at 18 °C and 28 °C as models of resistant and permissive infections and switched to the corresponding temperatures as temperature stress models, we illustrated that IL-6 and STAT3 expression, genome level of GCRV, and phosphorylation of STAT3 were temperature dependent and regulated by temperature stress. Further research revealed that activating IL-6/STAT3 axis enhanced GCRV replication and suppressed the expression of IFNs, whereas blocking the axis impaired viral replication. Mechanistically, grass carp STAT3 inhibited IRF3 nuclear translocation via interacting with it, thus down-regulating IFNs expression, restraining transcriptional activation of the IFN promoter, and facilitating GCRV replication. Overall, our work sheds light on an immune evasion mechanism whereby GCRV facilitates viral replication by hijacking IL-6/STAT3 axis to down-regulate IFNs expression, thus providing a valuable reference for targeted prevention and therapy of GCRV. [Display omitted] • GCRV-induced transcription and phosphorylation of STAT3 are temperature-dependent. • IL-6/STAT3 axis regulates transcription of type Ⅰ IFN and genome level of GCRV. • STAT3 interacts with IRF3. • STAT3 represses transcriptional activation of IFN promoter. • IL-6/STAT3 axis regulates nuclear translocation of IRF3. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10504648
Volume :
149
Database :
Academic Search Index
Journal :
Fish & Shellfish Immunology
Publication Type :
Academic Journal
Accession number :
177290193
Full Text :
https://doi.org/10.1016/j.fsi.2024.109564