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1. Evasion of early innate immune response by 2′- O -methylation of dengue genomic RNA

2. Dengue NS2A Protein Orchestrates Virus Assembly

3. Quantifying the RNA cap epitranscriptome reveals novel caps in cellular and viral RNA

4. The role of sequence context, nucleotide pool balance and stress in 2′-deoxynucleotide misincorporation in viral, bacterial and mammalian RNA

5. Flavivirus RNA methylation

6. Dimerization of Flavivirus NS4B Protein

7. Rational Design of a Flavivirus Vaccine by Abolishing Viral RNA 2′- O Methylation

8. Potent Allosteric Dengue Virus NS5 Polymerase Inhibitors: Mechanism of Action and Resistance Profiling

9. Functional Analysis of Two Cavities in Flavivirus NS5 Polymerase

10. RNA Structures Required for Production of Subgenomic Flavivirus RNA

11. 2′-O methylation of the viral mRNA cap evades host restriction by IFIT family members

12. Structural and Functional Analyses of a Conserved Hydrophobic Pocket of Flavivirus Methyltransferase

13. Characterization of Dengue Virus Resistance to Brequinar in Cell Culture

14. Inhibition of Dengue Virus Polymerase by Blocking of the RNA Tunnel

15. Identification and characterization of inhibitors of West Nile virus

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

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

18. Stabilization of dengue virus polymerase in de novo initiation assay provides advantages for compound screening

19. A multidimensional platform for the purification of non-coding RNA species

20. Flavivirus RNA cap methyltransferase: structure, function, and inhibition

21. A translation inhibitor that suppresses dengue virus in vitro and in vivo

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

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

24. Flavivirus methyltransferase: a novel antiviral target

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

26. Structure and function of flavivirus NS5 methyltransferase

27. West Nile virus 5'-cap structure is formed by sequential guanine N-7 and ribose 2'-O methylations by nonstructural protein 5

28. 2′-O Methylation of Internal Adenosine by Flavivirus NS5 Methyltransferase

29. 2'-O Methylation of Internal Adenosine by Flavivirus NS5 Methyltransferase.

30. Higher catalytic efficiency of N-7-methylation is responsible for processive N-7 and 2′-O methyltransferase activity in dengue virus

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

32. West Nile Virus Methyltransferase Catalyzes Two Methylations of the Viral RNA Cap through a Substrate-Repositioning Mechanism.

33. Inhibition of Dengue Virus Polymerase by Blocking of the RNA Tunnel.

34. Structure and Function of Flavivirus NS5 Methyltransferase.

35. West Nile Virus 5′-Cap Structure Is Formed by Sequential Guanine N-7 and Ribose 2′-O Methylations by Nonstructural Protein 5.

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