Viral and Cellular Proteins Involved in Coronavirus Replication
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Summary
Coronavirus may subvert these cellular proteins from cellular RNA processing or translation machineries to play a role in viral replication.
- Type
- review
- Published
- 2005-01-01
- Cited by
- 101
- References
- 219
- Access
- Open access
- OpenAlex
- https://openalex.org/W132997128
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10221091
Keywords
Biology, Viral replication, Viral structural protein, RNA, Coronavirus
References
- Shuttling of pre-mRNA binding proteins between nucleus and cytoplasm
- D‐E‐A‐D protein family of putative RNA helicases
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- RNA-dependent RNA polymerase activity in murine coronavirus-infected cells.
- Characterization of a second cleavage site and demonstration of activity in trans by the papain-like proteinase of the murine coronavirus mouse hepatitis virus strain A59
- Viral Replicase Gene Products Suffice for Coronavirus Discontinuous Transcription
- Regulation of coronavirus RNA transcription is likely mediated by protein-RNA interactions.
- A tale of two termini: a functional interaction between the termini of an mRNA is a prerequisite for efficient translation initiation.
- Murine coronavirus temperature sensitive mutants.
- Common replication strategies emerging from the study of diverse groups of positive-strand RNA viruses.
- An in vitro system for the leader-primed transcription of coronavirus mRNAs.
- Effects of mouse hepatitis virus infection on host cell metabolism.
- Characteristics of the poliovirus replication complex.
- An efficient ribosomal frame-shifting signal in the polymerase-encoding region of the coronavirus IBV.
- Evidence for a pseudoknot in the 3' untranslated region of the bovine coronavirus genome.
- Association of the yeast poly(A) tail binding protein with translation initiation factor eIF‐4G.
- General RNA binding proteins render translation cap dependent.
- hnRNP A3, A novel RNA cytoplasmic trafficking response element binding protein
- Mouse hepatitis virus nucleocapsid protein as a translational effector of viral mRNAs.
- Comparison of The Replication of Positive-Stranded Rna Viruses of Plants and Animals
Cited by
- Identification of a Gamma Interferon-Activated Inhibitor of Translation-Like RNA Motif at the 3′ End of the Transmissible Gastroenteritis Coronavirus Genome Modulating Innate Immune Response
- The Coronavirus Replicase: Insights into a Sophisticated Enzyme Machinery
- Global Genomics and Proteomics Approaches to Identify Host Factors as Targets to Induce Resistance Against Tomato Bushy Stunt Virus
- RNA-RNA and RNA-protein interactions in coronavirus replication and transcription
- Y Box-binding Protein-1 Binds to the Dengue Virus 3′-Untranslated Region and Mediates Antiviral Effects*
- Translation Elongation Factor 1A Facilitates the Assembly of the Tombusvirus Replicase and Stimulates Minus-Strand Synthesis
- Direct Inhibition of Tombusvirus Plus-Strand RNA Synthesis by a Dominant Negative Mutant of a Host Metabolic Enzyme, Glyceraldehyde-3-Phosphate Dehydrogenase, in Yeast and Plants
- Similar roles for yeast Dbp2 and Arabidopsis RH20 DEAD-box RNA helicases to Ded1 helicase in tombusvirus plus-strand synthesis.
- A Co-Opted DEAD-Box RNA Helicase Enhances Tombusvirus Plus-Strand Synthesis
- Polypyrimidine Tract Binding Protein Induces Human Papillomavirus Type 16 Late Gene Expression by Interfering with Splicing Inhibitory Elements at the Major Late 5′ Splice Site, SD3632
- The Cellular Interactome of the Coronavirus Infectious Bronchitis Virus Nucleocapsid Protein and Functional Implications for Virus Biology
- Host factors in the replication of positive-strand RNA viruses.
- Diverse roles of host RNA-binding proteins in RNA virus replication
- A temperature sensitive mutant of heat shock protein 70 reveals an essential role during the early steps of tombusvirus replication
- Host transcription factor Rpb11p affects tombusvirus replication and recombination via regulating the accumulation of viral replication proteins.
- Characterization of dominant-negative and temperature-sensitive mutants of tombusvirus replication proteins affecting replicase assembly.
- The dependence of viral RNA replication on co-opted host factors
- Polypyrimidine tract-binding protein influences negative strand RNA synthesis of dengue virus
- Translation Elongation Factor 1A is a component of the tombusvirus replicase complex and affects the stability of the p33 replication co-factor
- Bovine Coronavirus 5′-Proximal Genomic Acceptor Hotspot for Discontinuous Transcription Is 65 Nucleotides Wide
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