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PUBMED FOR HANDHELDS

Journal Abstract Search


195 related items for PubMed ID: 7820548

  • 1. Structures of poliovirus complexes with anti-viral drugs: implications for viral stability and drug design.
    Grant RA, Hiremath CN, Filman DJ, Syed R, Andries K, Hogle JM.
    Curr Biol; 1994 Sep 01; 4(9):784-97. PubMed ID: 7820548
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  • 3. Human rhinovirus 3 at 3.0 A resolution.
    Zhao R, Pevear DC, Kremer MJ, Giranda VL, Kofron JA, Kuhn RJ, Rossmann MG.
    Structure; 1996 Oct 15; 4(10):1205-20. PubMed ID: 8939746
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  • 4. Structural analysis of antiviral agents that interact with the capsid of human rhinoviruses.
    Badger J, Minor I, Oliveira MA, Smith TJ, Rossmann MG.
    Proteins; 1989 Oct 15; 6(1):1-19. PubMed ID: 2558377
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  • 6. Binding of the antiviral drug WIN51711 to the sabin strain of type 3 poliovirus: structural comparison with drug binding in rhinovirus 14.
    Hiremath CN, Grant RA, Filman DJ, Hogle JM.
    Acta Crystallogr D Biol Crystallogr; 1995 Jul 01; 51(Pt 4):473-89. PubMed ID: 15299834
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  • 7. A comparison of the anti-rhinoviral drug binding pocket in HRV14 and HRV1A.
    Kim KH, Willingmann P, Gong ZX, Kremer MJ, Chapman MS, Minor I, Oliveira MA, Rossmann MG, Andries K, Diana GD.
    J Mol Biol; 1993 Mar 05; 230(1):206-27. PubMed ID: 8383771
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  • 8. Distribution of drug resistance mutations in type 3 poliovirus identifies three regions involved in uncoating functions.
    Mosser AG, Sgro JY, Rueckert RR.
    J Virol; 1994 Dec 05; 68(12):8193-201. PubMed ID: 7966611
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  • 10. A novel basis of capsid stabilization by antiviral compounds.
    Phelps DK, Post CB.
    J Mol Biol; 1995 Dec 08; 254(4):544-51. PubMed ID: 7500332
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  • 11. Mechanism of action at the molecular level of the antiviral drug 3(2H)-isoflavene against type 2 poliovirus.
    Salvati AL, De Dominicis A, Tait S, Canitano A, Lahm A, Fiore L.
    Antimicrob Agents Chemother; 2004 Jun 08; 48(6):2233-43. PubMed ID: 15155227
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  • 12. Cryo-EM structure of pleconaril-resistant rhinovirus-B5 complexed to the antiviral OBR-5-340 reveals unexpected binding site.
    Wald J, Pasin M, Richter M, Walther C, Mathai N, Kirchmair J, Makarov VA, Goessweiner-Mohr N, Marlovits TC, Zanella I, Real-Hohn A, Verdaguer N, Blaas D, Schmidtke M.
    Proc Natl Acad Sci U S A; 2019 Sep 17; 116(38):19109-19115. PubMed ID: 31462495
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  • 13. Mechanism of action and capsid-stabilizing properties of VHHs with an in vitro antipolioviral activity.
    Schotte L, Strauss M, Thys B, Halewyck H, Filman DJ, Bostina M, Hogle JM, Rombaut B.
    J Virol; 2014 Apr 17; 88(8):4403-13. PubMed ID: 24501405
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  • 14. Cryoelectron microscopy analysis of the structural changes associated with human rhinovirus type 14 uncoating.
    Hewat EA, Blaas D.
    J Virol; 2004 Mar 17; 78(6):2935-42. PubMed ID: 14990711
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  • 15. The structure of human rhinovirus 16.
    Oliveira MA, Zhao R, Lee WM, Kremer MJ, Minor I, Rueckert RR, Diana GD, Pevear DC, Dutko FJ, McKinlay MA.
    Structure; 1993 Sep 15; 1(1):51-68. PubMed ID: 7915182
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  • 17. SCH 38057: a picornavirus capsid-binding molecule with antiviral activity after the initial stage of viral uncoating.
    Rozhon E, Cox S, Buontempo P, O'Connell J, Slater W, De Martino J, Schwartz J, Miller G, Arnold E, Zhang A.
    Antiviral Res; 1993 May 15; 21(1):15-35. PubMed ID: 8391247
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