R Padmanabhan

Affiliations: 
University of Kansas, Lawrence, KS, United States 
Area:
Molecular Biology, Microbiology
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"R Padmanabhan"
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Publications

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Lee E, Bujalowski PJ, Teramoto T, et al. (2021) Structures of flavivirus RNA promoters suggest two binding modes with NS5 polymerase. Nature Communications. 12: 2530
Padmanabhan R, Sarcar SN, Miller DL. (2019) Promoter Length Affects the Initiation of T7 RNA Polymerase In Vitro: New Insights into Promoter/Polymerase Co-evolution. Journal of Molecular Evolution
Teramoto T, Huang X, Armbruster P, et al. (2019) Melpop strain of infection of mosquito C6/36 cells modulates dengue virus-induced host cellular transcripts and induces critical sequence alterations in dengue viral genome. Journal of Virology
Teramoto T, Balasubramanian A, Choi KH, et al. (2017) Serotype-specific interactions among functional domains of Dengue virus 2 non-structural proteins (NS) 5 and NS3 are crucial for viral RNA replication. The Journal of Biological Chemistry
Klema VJ, Ye M, Hindupur A, et al. (2016) Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface. Plos Pathogens. 12: e1005451
Klema VJ, Padmanabhan R, Choi KH. (2015) Flaviviral Replication Complex: Coordination between RNA Synthesis and 51-RNA Capping. Viruses. 7: 4640-56
Padmanabhan R, Takhampunya R, Teramoto T, et al. (2015) Flavivirus RNA synthesis in vitro. Methods (San Diego, Calif.)
Erkizan HV, Schneider JA, Sajwan K, et al. (2015) RNA helicase A activity is inhibited by oncogenic transcription factor EWS-FLI1. Nucleic Acids Research. 43: 1069-80
Teramoto T, Boonyasuppayakorn S, Handley M, et al. (2014) Substitution of NS5 N-terminal domain of dengue virus type 2 RNA with type 4 domain caused impaired replication and emergence of adaptive mutants with enhanced fitness. The Journal of Biological Chemistry. 289: 22385-400
Boonyasuppayakorn S, Padmanabhan R. (2014) Construction of plasmid, bacterial expression, purification, and assay of dengue virus type 2 NS5 methyltransferase. Methods in Molecular Biology (Clifton, N.J.). 1138: 361-73
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