Why the study?
STAT3 is a multifunctional factor regulating inflammation and immunity, but knowledge of its regulatory mechanisms is very limited.
STAT3 regulates the type I IFN-mediated antiviral response by competing with STAT1 for nuclear entry via KPNA1 during EV71 infection.
STAT3 supports EV71 replication in vitro; leaves open host-directed inhibition as an antiviral strategy pending in vivo studies.
Signal transducer and activator of transcription 3 (STAT3) is a multifunctional factor that regulates inflammation and immunity. Knowledge of its regulatory mechanisms is very limited. Here, we showed that enterovirus 71 (EV71) infection induced the phosphorylation of STAT3 and the expression of its downstream inflammatory regulators. Knockdown of STAT3 with siRNAs significantly restricted viral RNA and protein levels, and also reduced viral titers. With further investigation, we found that importin α family member Karyopherin-α1 (KPNA1) was employed by both STAT1 and STAT3 for their nuclear import. The phosphorylated and un-phosphorylated STAT3 competed with STAT1 for binding to the decreased KPNA1 post infection and repressed downstream ISG expression. STAT3 knockdown alleviated the repressed type I IFN-mediated antiviral response upon infection and led to decreased viral replication. Taken together, our data suggested the role of STAT3 in maintaining the balance of inflammation and antiviral responses in the central nervous system (CNS) upon infection.
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Wang et al. (2019) studied this question.
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