Key result
EV71 and CA16 promote viral replication by inducing autophagy to suppress TLR7-dependent interferon production.
Why the study?
Enterovirus 71 and coxsackievirus A16 induce autophagy that promotes their replication, but the association with TLR-related signaling pathways was unclear.
Does inhibition of autophagy with 3-MA reduce viral replication and enhance TLR7-mediated IFN-I signaling in 16HBE cells infected with EV71 and CA16?
Does inhibition of autophagy with 3-MA reduce viral replication and enhance TLR7-mediated IFN-I signaling in 16HBE cells infected with EV71 and CA16?
p-value: p=<0.05
Autophagy induced by EV71 and CA16 promotes viral replication by degrading endosomes and suppressing the TLR7-mediated type I interferon signaling pathway.
Autophagy inhibition may enhance antiviral IFN-I responses in vitro; leaves open therapeutic relevance for EV71/CA16 infections.
Toll-like receptors (TLRs) act as molecular sentinels, detecting invading viral pathogens and triggering host innate immune responses, including autophagy. However, many viruses have evolved a series of strategies to manipulate autophagy for their own benefit. Enterovirus 71 (EV71) and coxsackievirus A16 (CA16), as the primary agents causing hand, foot and mouth disease (HFMD), can induce autophagy leading to their replication. Therefore, the objective of this study was to investigate whether enhanced viral replication caused by autophagy in EV71 and CA16 infections was associated with a TLR-related signaling pathway. Our results demonstrate that complete autophagy and incomplete autophagy were observed in human bronchial epithelial (16HBE) cells infected with EV71 and CA16. Moreover, suppression of autophagy by the pharmacological modulator 3-MA significantly and clearly decreased the survival rates and viral replication of EV71 and CA16 in 16HBE cells. Inhibition of autophagy also enhanced the expression of molecules related to the TLR7-dependent type I interferon (IFN-I) production pathway, such as TLR7, MyD88, IRF7 and IFN-α/β. Finally, immunofluorescence staining demonstrated that TLR7 endosome marker M6PR levels were clearly reduced in EV71- and CA16-infected cells, while they were markedly elevated in infected cells treated with 3-MA. These findings suggest that increased EV71 and CA16 replication meditated by autophagy in 16HBE cells might promote degradation of the endosome, leading to suppression of the TLR7-mediated IFN-I signaling pathway.
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Song et al. (2017) studied Enterovirus 71 (EV71) and coxsackievirus A16 (CA16) infection. EV71 and CA16 infection (with or without 3-MA autophagy inhibitor) vs. Mock-treated cells or 3-MA treated infected cells was evaluated on Autophagy induction, viral replication, and TLR7-dependent IFN-I pathway expression (p=<0.05). EV71 and CA16 infections induce autophagy in human bronchial epithelial cells, which facilitates viral replication by suppressing the TLR7-dependent type I interferon production pathway.
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