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1. Rational design of West Nile virus vaccine through large replacement of 3′ UTR with internal poly(A)

2. Viral Titer Quantification of West Nile Virus by Immunostaining Plaque Assay

3. Rational design of West Nile virus vaccine through large replacement of 3′ UTR with internal poly(A)

4. Replication-Defective West Nile Virus with NS1 Deletion as a New Vaccine Platform for Flavivirus

5. Generation of a recombinant West Nile virus stably expressing the Gaussia luciferase for neutralization assay

6. West Nile Virus NS1 Antagonizes Interferon Beta Production by Targeting RIG-I and MDA5

7. Generation and characterization of West Nile pseudo-infectious reporter virus for antiviral screening

8. Population variation of West Nile virus confers a host-specific fitness benefit in mosquitoes

9. Exclusion of West Nile Virus Superinfection through RNA Replication

10. Identification and characterization of inhibitors of West Nile virus

11. A single-amino acid substitution in West Nile virus 2K peptide between NS4A and NS4B confers resistance to lycorine, a flavivirus inhibitor

12. Co-selection of West Nile virus nucleotides that confer resistance to an antisense oligomer while maintaining long-distance RNA/RNA base pairings

13. West Nile virus genome cyclization and RNA replication require two pairs of long-distance RNA interactions

14. Neuronal CXCL10 Directs CD8 + T-Cell Recruitment and Control of West Nile Virus Encephalitis

15. A positively selected mutation in the WNV 2K peptide confers resistance to superinfection exclusion in vivo

16. Development and characterization of West Nile virus replicon expressing secreted Gaussia luciferase

17. Mutagenesis of D80-82 and G83 residues in West Nile Virus NS2B: Effects on NS2B-NS3 activity and viral replication

18. Internally deleted WNV genomes isolated from exotic birds in New Mexico: Function in cells, mosquitoes, and mice

19. Corrigendum to 'Population variation of West Nile virus confers a host-specific fitness benefit in mosquitoes' [Virology 404 (2010) 89–95]

20. West Nile virus envelope protein glycosylation is required for efficient viral transmission by Culex vectors

21. Terminal structures of West Nile virus genomic RNA and their interactions with viral NS5 protein

22. Genetic interactions among the West Nile virus methyltransferase, the RNA-dependent RNA polymerase, and the 5' stem-loop of genomic RNA

23. CXCR3 mediates region-specific antiviral T cell trafficking within the central nervous system during West Nile virus encephalitis

24. Distinct RNA elements confer specificity to flavivirus RNA cap methylation events

25. Potential for Co-Infection of a Mosquito-Specific Flavivirus, Nhumirim Virus, to Block West Nile Virus Transmission in Mosquitoes.

26. CXCR4 antagonism increases T cell trafficking in the central nervous system and improves survival from West Nile virus encephalitis.

27. Genetic analysis of West Nile virus containing a complete 3′CSI RNA deletion

28. Exclusion of West Nile Virus Superinfection through RNA Replication.

29. Tumor Necrosis Factor Alpha Protects against Lethal West Nile Virus Infection by Promoting Trafficking of Mononuclear Leukocytes into the Central Nervous System.

30. Neuronal CXCL10 Directs CD8+ T-Cell Recruitment and Control of West Nile Virus Encephalitis.

31. Short Direct Repeats in the 3' Untranslated Region Are Involved in Subgenomic Flaviviral RNA Production.

32. Different Degrees of 5'-3' DAR Interactions Modulate Zika Virus Genome Cyclization and Host Specific Replication.

33. Distinct RNA Elements Confer Specificity to Flavivirus RNA Cap Methylation Events.

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