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Published on: December 29, 2015
Sterile 20-like kinase 3 promotes tick-borne encephalitis virus assembly by interacting with NS2A and prM and
Jielin Tang1,2,3, Chonghui Xu2, Muqing Fu3
1Guangzhou Laboratory, Guangzhou, China.
Abstract:
Tick-borne encephalitis virus (TBEV) is the causative agent of a potentially fatal neurological infection in humans. Investigating virus-host interaction is important for understanding the pathogenesis of TBEV and developing effective antiviral drugs against this virus. Here, we report that mammalian ste20-like kinase 3 (MST3) is involved in the regulation of TBEV infection. The knockdown or knockout of MST3, but not other mammalian ste20-like kinase family members, inhibited TBEV replication. The knockdown of MST3 also significantly reduced TBEV replication in mouse primary astrocytes. Life cycle analysis indicated that MST3 remarkably impaired virion assembly efficiency and specific infectivity by respectively 59% and 95% in MST3-knockout cells. We further found that MST3 interacts with the viral proteins NS2A and prM; and MST3 enhances the interaction of NS2A-NS4A. Thus, MST3-NS2A complex plays a major role in recruiting prM-E heterodimers and NS4A and mediates the virion assembly. Additionally, we found that MST3 was biotinylated and combined with other proteins (e.g., ATG5, Sec24A, and SNX4) that are associated with the cellular membrane required for TBEV infection. Overall, our study revealed a novel function for MST3 in TBEV infection and identified as a novel host factor supporting TBEV assembly.
Insights
Mammalian ste20-like kinase 3 (MST3) is crucial for tick-borne encephalitis virus (TBEV) replication. This study reveals MST3 as a novel host factor essential for TBEV assembly and infectivity.
Area of Science:
- Virology
- Molecular Biology
- Neuroscience
Background:
- Tick-borne encephalitis virus (TBEV) causes severe neurological infections.
- Understanding TBEV pathogenesis and host interactions is key for antiviral development.
Purpose of the Study:
- To investigate the role of mammalian ste20-like kinase 3 (MST3) in TBEV infection.
- To identify host factors involved in TBEV replication and assembly.
Main Methods:
- Knockdown and knockout of MST3 in cell lines and primary astrocytes.
- TBEV replication assays.
- Viral life cycle analysis.
- Protein-protein interaction studies (MST3, viral proteins).
Main Results:
- MST3, but not other related kinases, significantly inhibited TBEV replication.
- MST3 deficiency impaired TBEV virion assembly efficiency and infectivity.
- MST3 interacts with viral proteins NS2A and prM, enhancing the NS2A-NS4A interaction.
- MST3 facilitates virion assembly by mediating the recruitment of viral components.
Conclusions:
- MST3 is a novel host factor essential for TBEV assembly.
- Targeting MST3 could be a potential antiviral strategy against TBEV infections.
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