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43 results on '"viral rna replication"'

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1. Picornaviruses and nuclear functions: targeting a cellular compartment distinct from the replication site of a positive-strand RNA virus

2. Discovery of Novel Andrographolide Derivatives as Antiviral Inhibitors against Human Enterovirus A71

3. Autophagy is involved in assisting the replication of Bamboo mosaic virus in Nicotiana benthamiana.

4. Lack of nsP2-specific nuclear functions attenuates chikungunya virus replication both in vitro and in vivo.

5. An E3 ubiquitin ligase from Nicotiana benthamiana targets the replicase of Bamboo mosaic virus and restricts its replication.

6. Host Lipids in Positive-Strand RNA Virus Genome Replication

7. The Multiples Fates of the Flavivirus RNA Genome During Pathogenesis

8. Host Lipids in Positive-Strand RNA Virus Genome Replication.

9. Novel Mutations in nsP2 Abolish Chikungunya Virus-Induced Transcriptional Shutoff and Make the Virus Less Cytopathic without Affecting Its Replication Rates.

10. Hijacking a host scaffold protein, RACK1, for replication of a plant RNA virus.

11. Multiple Host Factors Interact with the Hypervariable Domain of Chikungunya Virus nsP3 and Determine Viral Replication in Cell-Specific Mode.

13. Flavivirus RNA-Dependent RNA Polymerase Interacts with Genome UTRs and Viral Proteins to Facilitate Flavivirus RNA Replication

14. The Functional Roles of the Cis-acting Elements in Bamboo mosaic virus RNA Genome.

15. Functional RNA Elements in the Dengue Virus Genome

16. Harnessing host ROS-generating machinery for the robust genome replication of a plant RNA virus.

18. The role of surface basic amino acids of dengue virus NS3 helicase in viral RNA replication and enzyme activities.

19. Picornaviruses and nuclear functions: targeting a cellular compartment distinct from the replication site of a positive-strand RNA virus.

20. The glutathione transferase of Nicotiana benthamiana Nb GSTU4 plays a role in regulating the early replication of Bamboo mosaic virus.

21. Functional RNA Elements in the Dengue Virus Genome.

22. Interactions between p27 and p88 replicase proteins of Red clover necrotic mosaic virus play an essential role in viral RNA replication and suppression of RNA silencing via the 480-kDa viral replicase complex assembly

23. Alfalfa mosaic virus coat protein bridges RNA and RNA-dependent RNA polymerase in vitro

24. Phosphorylation of hepatitis C virus NS5A nonstructural protein: A new paradigm for phosphorylation-dependent viral RNA replication?

25. RNA-binding proteins that inhibit RNA virus infection.

26. Role of Divalent Metal Cations in ATP Hydrolysis Catalyzed by the Hepatitis C Virus NS3 Helicase: Magnesium Provides a Bridge for ATP to Fuel Unwinding

27. Characterization of the infectivity of Bamboo mosaic virus with its correlation to the in vitro replicase activities in Nicotiana benthamiana

28. Discovery of Novel Andrographolide Derivatives as Antiviral Inhibitors against Human Enterovirus A71.

29. Discovery of 14S-(2'-chloro-4'-nitrophenoxy)-8R/S,17-epoxy andrographolide as EV-A71 infection inhibitor.

30. Autophagy is involved in assisting the replication of Bamboo mosaic virus in Nicotiana benthamiana

31. An E3 ubiquitin ligase from Nicotiana benthamiana targets the replicase of Bamboo mosaic virus and restricts its replication

32. Editorial: Molecular Biology of

33. The Functional Roles of the Cis-acting Elements in Bamboo mosaic virus RNA Genome

35. Brome Mosaic Virus

36. Flavivirus RNA-Dependent RNA Polymerase Interacts with Genome UTRs and Viral Proteins to Facilitate Flavivirus RNA Replication.

37. Picornaviruses and nuclear functions: targeting a cellular compartment distinct from the replication site of a positive-strand RNA virus

38. Cerulenin, an inhibitor of lipid synthesis, blocks vesicular stomatitis virus RNA replication

39. Further Analysis of the Interaction of the Cellular Protein TIAR with the 3' Terminal Stem-Loop of the West Nile Virus (WNV) Minus-Strand RNA

40. The discovery of potent nonstructural protein 5A (NS5A) inhibitors with a unique resistance profile-Part 2.

41. Characterization of a nodavirus replicase revealed a de novo initiation mechanism of RNA synthesis and terminal nucleotidyltransferase activity.

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