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    August 2021
  1. THOMASTON JL, Samways ML, Konstantinidi A, Ma C, et al
    Rimantadine Binds to and Inhibits the Influenza A M2 Proton Channel without Enantiomeric Specificity.
    Biochemistry. 2021 Aug 3. doi: 10.1021/acs.biochem.1c00437.
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    July 2021
  2. ALLEN JD, Chawla H, Samsudin F, Zuzic L, et al
    Site-Specific Steric Control of SARS-CoV-2 Spike Glycosylation.
    Biochemistry. 2021;60:2153-2169.
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    April 2021
  3. BRAVO MF, Lema MA, Marianski M, Braunschweig AB, et al
    Flexible Synthetic Carbohydrate Receptors as Inhibitors of Viral Attachment.
    Biochemistry. 2021;60:999-1018.
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    March 2021
  4. PATTNAIK GP, Bhattacharjya S, Chakraborty H
    Enhanced Cholesterol-Dependent Hemifusion by Internal Fusion Peptide 1 of SARS Coronavirus-2 Compared to Its N-Terminal Counterpart.
    Biochemistry. 2021;60:559-562.
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    December 2020
  5. BHADRA S, Maranhao AC, Paik I, Ellington AD, et al
    One-Enzyme Reverse Transcription qPCR Using Taq DNA Polymerase.
    Biochemistry. 2020;59:4638-4645.
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    November 2020
  6. DE ROZIERES CM, Joseph S
    Influenza A Virus NS1 Protein Binds as a Dimer to RNA-Free PABP1 but Not to the PABP1.Poly(A) RNA Complex.
    Biochemistry. 2020 Nov 10. doi: 10.1021/acs.biochem.0c00666.
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    August 2020
  7. BIGLEY AN, Narindoshvili T, Raushel FM
    A Chemoenzymatic Synthesis of the (RP)-Isomer of the Antiviral Prodrug Remdesivir.
    Biochemistry. 2020;59:3038-3043.
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    July 2020
  8. FRICK DN, Virdi RS, Vuksanovic N, Dahal N, et al
    Molecular Basis for ADP-Ribose Binding to the Mac1 Domain of SARS-CoV-2 nsp3.
    Biochemistry. 2020;59:2608-2615.
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    May 2020
  9. NUTHO B, Mahalapbutr P, Hengphasatporn K, Pattaranggoon NC, et al
    Why Are Lopinavir and Ritonavir Effective against the Newly Emerged Coronavirus 2019? Atomistic Insights into the Inhibitory Mechanisms.
    Biochemistry. 2020;59:1769-1779.
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  10. RITCHIE C, Li L
    cGAMP as an Adjuvant in Antiviral Vaccines and Cancer Immunotherapy.
    Biochemistry. 2020;59:1713-1715.
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    January 2020
  11. THOMASTON JL, Konstantinidi A, Liu L, Lambrinidis G, et al
    X-ray crystal structures of the influenza M2 proton channel drug-resistant V27A mutant bound to a spiro-adamantyl amine inhibitor reveal the mechanism of adamantane resistance.
    Biochemistry. 2020 Jan 2. doi: 10.1021/acs.biochem.9b00971.
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    April 2019
  12. RANAWEERA A, Ratnayake PU, Ekanayaka EAP, Declercq R, et al
    Hydrogen-deuterium exchange supports independent membrane-interfacial fusion peptide and transmembrane domains in subunit 2 of influenza virus hemagglutinin protein, a structured and aqueous-protected connection between the fusion peptide and soluble
    Biochemistry. 2019 Apr 22. doi: 10.1021/acs.biochem.8b01272.
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  13. CERULLI RA, Kritzer JA
    Stringing Together a Universal Influenza Antibody.
    Biochemistry. 2019 Apr 4. doi: 10.1021/acs.biochem.9b00002.
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    September 2018
  14. SANTNER P, Martins JMDS, Laursen JS, Behrendt L, et al
    A robust proton flux (pHlux) assay for studying function and inhibition of the Influenza A M2 proton channel.
    Biochemistry. 2018 Sep 19. doi: 10.1021/acs.biochem.8b00721.
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  15. SANTNER P, Martins JMDS, Kampmeyer C, Hartmann-Petersen R, et al
    Random mutagenesis analysis of the Influenza A M2 proton channel reveals novel resistance mutants.
    Biochemistry. 2018 Sep 19. doi: 10.1021/acs.biochem.8b00722.
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    August 2018
  16. RANAWEERA A, Ratnayake PU, Weliky DP
    Stabilities of the Soluble Ectodomain and Fusion Peptide Hairpins of the Influenza Virus Hemagglutinin Subunit II Protein Are Positively-Correlated with Membrane Fusion.
    Biochemistry. 2018 Aug 24. doi: 10.1021/acs.biochem.8b00764.
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    May 2018
  17. ARIAS-MIRELES BH, de Rozieres CM, Ly K, Joseph S, et al
    RNA Modulates the Interaction between Influenza A Virus NS1 and Human PABP1.
    Biochemistry. 2018 May 25. doi: 10.1021/acs.biochem.8b00218.
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    December 2016
  18. MACCHI E, Rudd TR, Raman R, Sasisekharan R, et al
    Nuclear Magnetic Resonance and Molecular Dynamics Simulation of the Interaction between Recognition Protein H7 of the Novel Influenza Virus H7N9 and Glycan Cell Surface Receptors.
    Biochemistry. 2016;55:6605-6616.
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