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Characterization of the African Swine Fever Virus Decapping Enzyme during Infection
Ana Quintas1, Daniel Pérez-Núñez1, Elena G Sánchez1
1Centro de Biología Molecular Severo Ochoa, CSIC-UAM, Universidad Autónoma de Madrid, Madrid, Spain.
Abstract:
African swine fever virus (ASFV) infection is characterized by a progressive decrease in cellular protein synthesis with a concomitant increase in viral protein synthesis, though the mechanism by which the virus achieves this is still unknown. Decrease of cellular mRNA is observed during ASFV infection, suggesting that inhibition of cellular proteins is due to an active mRNA degradation process. ASFV carries a gene (Ba71V D250R/Malawi g5R) that encodes a decapping protein (ASFV-DP) that has a Nudix hydrolase motif and decapping activity in vitro Here, we show that ASFV-DP was expressed from early times and accumulated throughout the infection with a subcellular localization typical of the endoplasmic reticulum, colocalizing with the cap structure and interacting with the ribosomal protein L23a. ASFV-DP was capable of interaction with poly(A) RNA in cultured cells, primarily mediated by the N-terminal region of the protein. ASFV-DP also interacted with viral and cellular RNAs in the context of infection, and its overexpression in infected cells resulted in decreased levels of both types of transcripts. This study points to ASFV-DP as a viral decapping enzyme involved in both the degradation of cellular mRNA and the regulation of viral transcripts.IMPORTANCE Virulent ASFV strains cause a highly infectious and lethal disease in domestic pigs for which there is no vaccine. Since 2007, an outbreak in the Caucasus region has spread to Russia, jeopardizing the European pig population and making it essential to deepen knowledge about the virus. Here, we demonstrate that ASFV-DP is a novel RNA-binding protein implicated in the regulation of mRNA metabolism during infection, making it a good target for vaccine development.
Insights
African swine fever virus (ASFV) infection involves a viral decapping enzyme (ASFV-DP) that degrades cellular mRNA and regulates viral transcripts. This discovery offers a potential target for ASFV vaccine development.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- African swine fever virus (ASFV) infection leads to reduced cellular protein synthesis and increased viral protein synthesis.
- The precise mechanism behind ASFV's manipulation of host protein synthesis, particularly mRNA degradation, remains unclear.
Purpose of the Study:
- To investigate the function of the ASFV-encoded decapping protein (ASFV-DP) in viral infection.
- To elucidate the role of ASFV-DP in mRNA metabolism and its potential as a vaccine target.
Main Methods:
- Expression analysis and subcellular localization of ASFV-DP during infection.
- In vitro decapping activity assays and RNA-binding studies.
- Overexpression experiments in ASFV-infected cells.
Main Results:
- ASFV-DP is expressed early, accumulates during infection, and localizes to the endoplasmic reticulum.
- ASFV-DP exhibits decapping activity and interacts with both cellular and viral RNAs.
- Overexpression of ASFV-DP reduces levels of both cellular and viral transcripts.
Conclusions:
- ASFV-DP is a novel viral decapping enzyme crucial for regulating mRNA metabolism during ASFV infection.
- ASFV-DP's role in mRNA degradation and viral transcript regulation makes it a promising target for ASFV vaccine development.
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