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1. Characterization of a multipurpose NS3 surface patch coordinating HCV replicase assembly and virion morphogenesis.

2. Identification of NS2 determinants stimulating intrinsic HCV NS2 protease activity.

3. Development of a High-Throughput Serum Neutralization Test Using Recombinant Pestiviruses Possessing a Small Reporter Tag

4. A positive-strand RNA virus uses alternative protein-protein interactions within a viral protease/cofactor complex to switch between RNA replication and virion morphogenesis.

5. Correction: A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication.

6. A conserved NS3 surface patch orchestrates NS2 protease stimulation, NS5A hyperphosphorylation and HCV genome replication.

8. DNAJC14-Independent Replication of the Atypical Porcine Pestivirus

9. A novel NS3/4A protease dependent cleavage site within pestiviral NS2

10. Membrane Topology of Pestiviral Non-Structural Protein 2 and determination of the minimal autoprotease domain

11. Bovine Viral Diarrhea, Border Disease, and Classical Swine Fever Viruses (Flaviviridae)

12. Optimal flexibility of the linker region of Zika virus NS5 methyltransferase-polymerase is critical for virus replication

13. Determination of Critical Requirements for Classical Swine Fever Virus NS2-3-Independent Virion Formation

14. Development of a High-Throughput Serum Neutralization Test Using Recombinant Pestiviruses Possessing a Small Reporter Tag

15. A positive-strand RNA virus uses alternative protein-protein interactions within a viral protease/cofactor complex to switch between RNA replication and virion morphogenesis

16. Functional Characterization of Bovine Viral Diarrhea Virus Nonstructural Protein 5A by Reverse Genetic Analysis and Live Cell Imaging

17. A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication

18. Cytopathogenicity of Classical Swine Fever Virus Correlates with Attenuation in the Natural Host

19. The Molecular Biology of Pestiviruses

20. Characterization of the Determinants of NS2-3-Independent Virion Morphogenesis of Pestiviruses

21. The Molecular Biology of Pestiviruses

22. Dissection of a viral autoprotease elucidates a function of a cellular chaperone in proteolysis

23. Rearrangement of viral sequences in cytopathogenic pestiviruses☆

24. Cell-Derived Sequences in the N-Terminal Region of the Polyprotein of a Cytopathogenic Pestivirus

25. A Cellular J-Domain Protein Modulates Polyprotein Processing and Cytopathogenicity of a Pestivirus

26. Genetic Analysis of the Pestivirus Nonstructural Coding Region: Defects in the NS5A Unit Can Be Complemented in trans

27. Translation from the internal ribosome entry site of bovine viral diarrhea virus is independent of the interaction with polypyrimidine tract-binding protein

28. E2-p7 Region of the Bovine Viral Diarrhea Virus Polyprotein: Processing and Functional Studies

29. NS3 Serine Protease of Bovine Viral Diarrhea Virus: Characterization of Active Site Residues, NS4A Cofactor Domain, and Protease–Cofactor Interactions

30. Establishment and Characterization of Cytopathogenic and Noncytopathogenic Pestivirus Replicons

31. Contributors

32. Molecular Characterization of Border Disease Virus, a Pestivirus from Sheep

33. Pestivirus virion morphogenesis in the absence of uncleaved nonstructural protein 2-3

34. Processing of Poly-ubiquitin in the Polyprotein of an RNA Virus

35. Basic Science Paves the Way to Novel Safe and Effective Pestivirus Vaccines

36. HCV research 20 years after discovery: a summary of the 16th international symposium on hepatitis C virus and related viruses

37. Cyclosporine A inhibits hepatitis C virus nonstructural protein 2 through cyclophilin A

38. Viral cytopathogenicity correlated with integration of ubiquitin-coding sequences

39. A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication

40. Persistence of bovine viral diarrhea virus is determined by a cellular cofactor of a viral autoprotease

41. Temporal modulation of an autoprotease is crucial for replication and pathogenicity of an RNA virus

42. The genetic basis for cytopathogenicity of pestiviruses

43. Pathogenesis of mucosal disease, a deadly disease of cattle caused by a pestivirus

44. Characterization of an autonomous subgenomic pestivirus RNA replicon

45. Serine protease of pestiviruses: determination of cleavage sites

46. Cytopathogenicity of a pestivirus correlates with a 27-nucleotide insertion

47. Processing in the pestivirus E2-NS2 region: identification of proteins p7 and E2p7

48. Cellular sequences in viral genomes

49. Pathogenesis of mucosal disease: a cytopathogenic pestivirus generated by an internal deletion

50. Molecular Biology of Pestiviruses and Comparison with HCV

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