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Published on: August 25, 2010
Cleavage of Dicer protein by I7 protease during vaccinia virus infection
Jhih-Si Chen1, Hui-Chun Li2, Shu-I Lin1
1Department of Laboratory Medicine and Medical Biotechnology, Tzu Chi University, Hualien, Taiwan.
Abstract:
Dicer is the key component in the miRNA pathway. Degradation of Dicer protein is facilitated during vaccinia virus (VV) infection. A C-terminal cleaved product of Dicer protein was detected in the presence of MG132 during VV infection. Thus, it is possible that Dicer protein is cleaved by a viral protease followed by proteasome degradation of the cleaved product. There is a potential I7 protease cleavage site in the C-terminus of Dicer protein. Indeed, reduction of Dicer protein was detected when Dicer was co-expressed with I7 protease but not with an I7 protease mutant protein lack of the protease activity. Mutation of the potential I7 cleavage site in the C-terminus of Dicer protein resisted its degradation during VV infection. Furthermore, Dicer protein was reduced dramatically by recombinant VV vI7Li after the induction of I7 protease. If VV could facilitate the degradation of Dicer protein, the process of miRNA should be affected by VV infection. Indeed, accumulation of precursor miR122 was detected after VV infection or I7 protease expression. Reduction of miR122 would result in the suppression of HCV sub-genomic RNA replication, and, in turn, the amount of viral proteins. As expected, significant reduction of HCVNS5A protein was detected after VV infection and I7 protease expression. Therefore, our results suggest that VV could cleave Dicer protein through I7 protease to facilitate Dicer degradation, and in turn, suppress the processing of miRNAs. Effect of Dicer protein on VV replication was also studied. Exogenous expression of Dicer protein suppresses VV replication slightly while knockdown of Dicer protein does not affect VV replication significantly.
Insights
Vaccinia virus (VV) infection degrades Dicer protein via the viral I7 protease, suppressing microRNA (miRNA) processing. This mechanism impacts Hepatitis C virus (HCV) replication by reducing viral proteins.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Dicer protein is essential for microRNA (miRNA) biogenesis.
- Vaccinia virus (VV) infection leads to Dicer protein degradation.
- Viral proteases can mediate host protein degradation.
Purpose of the Study:
- To investigate the mechanism of Dicer protein degradation during VV infection.
- To determine the role of viral protease I7 in Dicer degradation.
- To elucidate the impact of Dicer degradation on miRNA processing and viral replication.
Main Methods:
- Co-expression of Dicer and I7 protease in cells.
- Site-directed mutagenesis of potential I7 cleavage sites in Dicer.
- Analysis of Dicer protein levels and miRNA precursor accumulation via Western blot and qRT-PCR.
- Assessment of Hepatitis C virus (HCV) protein levels and VV replication.
Main Results:
- VV infection causes C-terminal cleavage and degradation of Dicer protein.
- Viral protease I7 directly cleaves Dicer at a specific C-terminal site.
- Dicer degradation by VV and I7 protease leads to accumulation of miR122 precursors.
- Suppression of miR122 results in reduced HCV NS5A protein levels.
- Dicer protein exhibits a minor suppressive effect on VV replication.
Conclusions:
- VV utilizes its I7 protease to cleave and degrade Dicer, thereby inhibiting miRNA biogenesis.
- This viral strategy contributes to the modulation of host gene expression and viral replication, including that of HCV.
- Dicer plays a limited role in controlling VV replication itself.
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