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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Feline Calicivirus Proteinase-Polymerase Protein Degrades mRNAs To Inhibit Host Gene Expression
Hongxia Wu1, Jiapei Huang1, Yongxiang Liu2
1State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, People's Republic of China.
Abstract:
To replicate efficiently and evade the antiviral immune response of the host, some viruses degrade host mRNA to induce host gene shutoff via encoding shutoff factors. In this study, we found that feline calicivirus (FCV) infection promotes the degradation of endogenous and exogenous mRNAs and induces host gene shutoff, which results in global inhibition of host protein synthesis. Screening assays revealed that proteinase-polymerase (PP) is a most effective factor in reducing mRNA expression. Moreover, PP from differently virulent strains of FCV could induce mRNA degradation. Further, we found that the key sites of the PP protein required for its proteinase activity are also essential for its shutoff activity but also required for viral replication. The mechanism analysis showed that PP mainly targets Pol II-transcribed RNA in a ribosome-, 5' cap-, and 3' poly(A) tail-independent manner. Moreover, purified glutathione S-transferase (GST)-PP fusion protein exhibits RNase activity in vitro in assays using green fluorescent protein (GFP) RNA transcribed in vitro as a substrate in the absence of other viral or cellular proteins. Finally, PP-induced shutoff requires host Xrn1 to complete further RNA degradation. This study provides a newly discovered strategy in which FCV PP protein induces host gene shutoff by promoting the degradation of host mRNAs. IMPORTANCE Virus infection-induced shutoff is the result of targeted or global manipulation of cellular gene expression and leads to efficient viral replication and immune evasion. FCV is a highly contagious pathogen that persistently infects cats. It is unknown how FCV blocks the host immune response and persistently exists in cats. In this study, we found that FCV infection promotes the degradation of host mRNAs and induces host gene shutoff via a common strategy. Further, PP protein for different FCV strains is a key factor that enhances mRNA degradation. An in vitro assay showed that the GST-PP fusion protein possesses RNase activity in the absence of other viral or cellular proteins. This study demonstrates that FCV induces host gene shutoff by promoting the degradation of host mRNAs, thereby introducing a potential mechanism by which FCV infection inhibits the immune response.
Insights
Feline calicivirus (FCV) uses its proteinase-polymerase (PP) to degrade host mRNA, shut down gene expression, and inhibit protein synthesis, aiding viral replication and immune evasion. This process requires host factor Xrn1.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Viruses employ strategies like host mRNA degradation to evade antiviral responses and promote replication.
- Feline calicivirus (FCV) is a contagious pathogen known to infect cats, but its mechanisms for immune evasion and persistence are not fully understood.
Purpose of the Study:
- To investigate the mechanism by which FCV induces host gene shutoff and inhibits protein synthesis.
- To identify the viral factors responsible for mRNA degradation and host gene shutoff during FCV infection.
Main Methods:
- Screening assays to identify FCV factors involved in mRNA expression reduction.
- Analysis of the proteinase-polymerase (PP) protein's role in mRNA degradation and viral replication.
- In vitro assays using purified GST-PP fusion protein and GFP RNA to assess RNase activity.
- Investigating the requirement of host factor Xrn1 in PP-induced shutoff.
Main Results:
- FCV infection leads to global degradation of host mRNAs and inhibition of protein synthesis.
- The FCV proteinase-polymerase (PP) was identified as a key factor inducing mRNA degradation and host gene shutoff.
- Specific sites in PP essential for proteinase activity are also crucial for shutoff and viral replication.
- Purified PP exhibits direct RNase activity against RNA substrates in vitro, independent of cellular factors.
- PP-mediated shutoff requires the host factor Xrn1 for complete RNA degradation.
Conclusions:
- FCV utilizes its PP protein as a potent RNase to degrade host mRNAs, inducing gene shutoff and inhibiting host protein synthesis.
- This strategy contributes to FCV's efficient replication and evasion of the host antiviral immune response.
- The findings reveal a novel mechanism of viral immune evasion involving direct mRNA degradation by a viral protein.
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