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High-throughput Screening for Broad-spectrum Chemical Inhibitors of RNA Viruses
Published on: May 5, 2014
Targeting WDPF domain of Hsp27 achieves a broad spectrum of antiviral
Mandi Wu1, Wei Li2, Houying Leung1
1Department of Biomedical Sciences City University of Hong Kong Hong Kong Special Administrative Region Hong Kong China.
Abstract:
Enterovirus A71 (EV-A71) is a positive-sense single-stranded RNA virus, which hijacks host proteins to benefit viral internal ribosome entry site (IRES)-dependent protein translation and further propagation. We demonstrated that serine 78 (S78) phosphorylation of Hsp27 is critical for Hsp27/hnRNP A1 relocalization upon EV-A71 infection. Here, we report that the deletion of WDPF and ACD domains disturbs subcellular localization of Hsp27, resulting in partial nuclear translocation. The domain deletion-induced Hsp27 nuclear translocation fails to direct hnRNP A1 translocation. The 2Apro-induced IRES activity and viral replication are suppressed by the deletion of WDPF or ACD domain. Surprisingly, a peptide (WDPF) dramatically inhibits S78 phosphorylation. Therefore, hnRNP A1 translocation, viral IRES activity, and viral protein translation and propagation are all strongly suppressed by the WDPF peptide, but not by peptide without WDPFR sequence (ΔWDPF). Moreover, the WDPF peptide also has potent antiviral activity on other RNA virus (e.g., coronavirus HCoV-OC43) and DNA virus (e.g., HSV-1 and HBV). Peptide treatment with kinase inhibitor Sorafenib brings an additional inhibitory effect on HCoV-OC43 and HSV-1. Taken together, we uncover a crucial role of WDPF domain in S78 phosphorylation for EV-A71-induced hnRNP A1 nuclear translocation, IRES-dependent viral protein translation, and EV-A71 propagation. Our results explore a new path for target-based pan-antiviral strategy.
Insights
A WDPF peptide inhibits Enterovirus A71 (EV-A71) replication by blocking Hsp27 phosphorylation, crucial for viral protein translation and propagation. This peptide shows broad-spectrum antiviral activity against various viruses.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Enterovirus A71 (EV-A71) utilizes host factors for replication.
- Hsp27 phosphorylation at serine 78 (S78) is vital for EV-A71 propagation.
- Hsp27/hnRNP A1 relocalization is essential for viral protein translation.
Purpose of the Study:
- To investigate the role of Hsp27 domains in EV-A71 infection.
- To identify novel antiviral strategies targeting viral protein translation.
- To explore the therapeutic potential of targeting Hsp27 phosphorylation.
Main Methods:
- Domain deletion analysis of Hsp27.
- Peptide inhibition assays using WDPF and control peptides.
- Viral replication assays for EV-A71, HCoV-OC43, HSV-1, and HBV.
- Combination therapy with WDPF peptide and kinase inhibitor Sorafenib.
Main Results:
- Deletion of WDPF or ACD domains in Hsp27 impairs nuclear translocation and hnRNP A1 relocalization.
- A WDPF peptide significantly inhibits Hsp27 S78 phosphorylation, viral IRES activity, and EV-A71 replication.
- The WDPF peptide demonstrates broad-spectrum antiviral activity against RNA and DNA viruses.
- Combined treatment with WDPF peptide and Sorafenib enhances antiviral effects.
Conclusions:
- The WDPF domain of Hsp27 is critical for EV-A71 propagation by regulating S78 phosphorylation and hnRNP A1 translocation.
- Targeting Hsp27 phosphorylation with WDPF peptide offers a promising pan-antiviral strategy.
- This research opens new avenues for developing broad-spectrum antiviral therapeutics.
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