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Zika Virus Infectious Cell Culture System and the In Vitro Prophylactic Effect of Interferons
Published on: August 23, 2016
AXL promotes Zika virus infection in astrocytes by antagonizing type I interferon signalling
Jian Chen1, Yi-Feng Yang2, Yu Yang1
1Scientific Research Center, Shanghai Public Health Clinical Center & Institutes of Biomedical Sciences, Key Laboratory of Medical Molecular Virology of Ministry of Education/Health, Shanghai Medical College, Fudan University, Shanghai, China.
Abstract:
Zika virus (ZIKV) is associated with neonatal microcephaly and Guillain-Barré syndrome1,2. While progress has been made in understanding the causal link between ZIKV infection and microcephaly3-9, the life cycle and pathogenesis of ZIKV are less well understood. In particular, there are conflicting reports on the role of AXL, a TAM family kinase receptor that was initially described as the entry receptor for ZIKV10-22. Here, we show that while genetic ablation of AXL protected primary human astrocytes and astrocytoma cell lines from ZIKV infection, AXL knockout did not block the entry of ZIKV. We found, instead, that the presence of AXL attenuated the ZIKV-induced activation of type I interferon (IFN) signalling genes, including several type I IFNs and IFN-stimulating genes. Knocking out type I IFN receptor α chain (IFNAR1) restored the vulnerability of AXL knockout astrocytes to ZIKV infection. Further experiments suggested that AXL regulates the expression of SOCS1, a known type I IFN signalling suppressor, in a STAT1/STAT2-dependent manner. Collectively, our results demonstrate that AXL is unlikely to function as an entry receptor for ZIKV and may instead promote ZIKV infection in human astrocytes by antagonizing type I IFN signalling.
Insights
AXL does not act as an entry receptor for Zika virus (ZIKV). Instead, AXL promotes ZIKV infection in human astrocytes by suppressing type I interferon signaling, crucial for antiviral defense.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Zika virus (ZIKV) causes microcephaly and Guillain-Barré syndrome.
- The ZIKV life cycle and pathogenesis are not fully understood.
- Conflicting reports exist regarding AXL's role as a ZIKV entry receptor.
Purpose of the Study:
- To investigate the role of AXL in ZIKV infection.
- To clarify whether AXL functions as a ZIKV entry receptor.
- To elucidate the mechanism by which AXL influences ZIKV pathogenesis.
Main Methods:
- Genetic ablation of AXL in primary human astrocytes and astrocytoma cell lines.
- Assessing ZIKV entry and infection levels.
- Analyzing type I interferon (IFN) signaling pathway activation.
- Investigating the role of type I IFN receptor α chain (IFNAR1) and SOCS1.
Main Results:
- AXL knockout protected astrocytes from ZIKV infection but did not block viral entry.
- AXL attenuated ZIKV-induced type I IFN signaling.
- Knocking out IFNAR1 restored ZIKV susceptibility in AXL knockout astrocytes.
- AXL regulates SOCS1 expression in a STAT1/STAT2-dependent manner.
Conclusions:
- AXL is unlikely to be an entry receptor for ZIKV.
- AXL promotes ZIKV infection in human astrocytes by antagonizing type I IFN signaling.
- AXL's interaction with the IFN pathway is a key factor in ZIKV pathogenesis.
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