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Journal Abstract Search


190 related items for PubMed ID: 8035487

  • 21. The phenotype in vitro and in infected cells of herpes simplex virus 1 alpha trans-inducing factor (VP16) carrying temperature-sensitive mutations introduced by substitution of cysteines.
    Poon AP, Roizman B.
    J Virol; 1995 Dec; 69(12):7658-67. PubMed ID: 7494274
    [Abstract] [Full Text] [Related]

  • 22. Transcriptional activation by DNA-binding derivatives of HSV-1 VP16 that lack the carboxyl-terminal acidic activation domain.
    Popova B, Bilan P, Xiao P, Faught M, Capone JP.
    Virology; 1995 May 10; 209(1):19-28. PubMed ID: 7747469
    [Abstract] [Full Text] [Related]

  • 23. Characterization of DNA binding properties of the immediate-early gene product of equine herpesvirus type 1.
    Kim SK, Smith RH, O'Callaghan DJ.
    Virology; 1995 Oct 20; 213(1):46-56. PubMed ID: 7483278
    [Abstract] [Full Text] [Related]

  • 24. Characterization of the transactivation domain of the equine herpesvirus type 1 immediate-early protein.
    Buczynski KA, Kim SK, O'Callaghan DJ.
    Virus Res; 1999 Dec 15; 65(2):131-40. PubMed ID: 10581386
    [Abstract] [Full Text] [Related]

  • 25. Hydrophobic cluster analysis predicts an amino-terminal domain of varicella-zoster virus open reading frame 10 required for transcriptional activation.
    Moriuchi H, Moriuchi M, Pichyangkura R, Triezenberg SJ, Straus SE, Cohen JI.
    Proc Natl Acad Sci U S A; 1995 Sep 26; 92(20):9333-7. PubMed ID: 7568128
    [Abstract] [Full Text] [Related]

  • 26. Repression of gene expression upon infection of cells with herpes simplex virus type 1 mutants impaired for immediate-early protein synthesis.
    Preston CM, Nicholl MJ.
    J Virol; 1997 Oct 26; 71(10):7807-13. PubMed ID: 9311867
    [Abstract] [Full Text] [Related]

  • 27. Transcriptional activation by herpes simplex virus type 1 VP16 in vitro and its inhibition by oligopeptides.
    Wu TJ, Monokian G, Mark DF, Wobbe CR.
    Mol Cell Biol; 1994 May 26; 14(5):3484-93. PubMed ID: 8164693
    [Abstract] [Full Text] [Related]

  • 28. Characterization of the acidic domain of the IE1 regulatory protein from Orgyia pseudotsugata multicapsid nucleopolyhedrovirus.
    Forsythe IJ, Shippam CE, Willis LG, Stewart S, Grigliatti T, Theilmann DA.
    Virology; 1998 Dec 05; 252(1):65-81. PubMed ID: 9875318
    [Abstract] [Full Text] [Related]

  • 29. Potential role for luman, the cellular homologue of herpes simplex virus VP16 (alpha gene trans-inducing factor), in herpesvirus latency.
    Lu R, Misra V.
    J Virol; 2000 Jan 05; 74(2):934-43. PubMed ID: 10623756
    [Abstract] [Full Text] [Related]

  • 30. Herpesvirus of turkeys homologue of HSV VP16 is structurally related to varicella zoster virus trans-inducing protein encoded by ORF 10.
    Kopácek J, Zelník V, Brasseur R, Koptidesová D, Rejholcová O, Pastoreková S, Pastorek J.
    Virus Genes; 1997 Jan 05; 15(1):45-52. PubMed ID: 9354269
    [Abstract] [Full Text] [Related]

  • 31. Positive and negative regulation at the herpes simplex virus ICP4 and ICP0 TAATGARAT motifs.
    Douville P, Hagmann M, Georgiev O, Schaffner W.
    Virology; 1995 Feb 20; 207(1):107-16. PubMed ID: 7871718
    [Abstract] [Full Text] [Related]

  • 32. DNA sequence and transcriptional analyses of the region of the equine herpesvirus type 1 Kentucky A strain genome encoding glycoprotein C.
    Matsumura T, Smith RH, O'Callaghan DJ.
    Virology; 1993 Apr 20; 193(2):910-23. PubMed ID: 8384760
    [Abstract] [Full Text] [Related]

  • 33. Herpes simplex virus 1 ICP22 inhibits the transcription of viral gene promoters by binding to and blocking the recruitment of P-TEFb.
    Guo L, Wu WJ, Liu LD, Wang LC, Zhang Y, Wu LQ, Guan Y, Li QH.
    PLoS One; 2012 Apr 20; 7(9):e45749. PubMed ID: 23029222
    [Abstract] [Full Text] [Related]

  • 34. Characterization of the regulatory function of the ICP22 protein of equine herpesvirus type 1.
    Holden VR, Zhao Y, Thompson Y, Caughman GB, Smith RH, O'Callaghan DJ.
    Virology; 1995 Jul 10; 210(2):273-82. PubMed ID: 7618267
    [Abstract] [Full Text] [Related]

  • 35. Phosphorylation of the VP16 transcriptional activator protein during herpes simplex virus infection and mutational analysis of putative phosphorylation sites.
    Ottosen S, Herrera FJ, Doroghazi JR, Hull A, Mittal S, Lane WS, Triezenberg SJ.
    Virology; 2006 Feb 20; 345(2):468-81. PubMed ID: 16297954
    [Abstract] [Full Text] [Related]

  • 36. Sequence, function, and regulation of the Vmw65 gene of herpes simplex virus type 2.
    Greaves RF, O'Hare P.
    J Virol; 1991 Dec 20; 65(12):6705-13. PubMed ID: 1658370
    [Abstract] [Full Text] [Related]

  • 37. Crystal structure of the conserved core of the herpes simplex virus transcriptional regulatory protein VP16.
    Liu Y, Gong W, Huang CC, Herr W, Cheng X.
    Genes Dev; 1999 Jul 01; 13(13):1692-703. PubMed ID: 10398682
    [Abstract] [Full Text] [Related]

  • 38. VP16-dependent association of chromatin-modifying coactivators and underrepresentation of histones at immediate-early gene promoters during herpes simplex virus infection.
    Herrera FJ, Triezenberg SJ.
    J Virol; 2004 Sep 01; 78(18):9689-96. PubMed ID: 15331701
    [Abstract] [Full Text] [Related]

  • 39. Truncation of the C-terminal acidic transcriptional activation domain of herpes simplex virus VP16 produces a phenotype similar to that of the in1814 linker insertion mutation.
    Smiley JR, Duncan J.
    J Virol; 1997 Aug 01; 71(8):6191-3. PubMed ID: 9223515
    [Abstract] [Full Text] [Related]

  • 40. Heat-shock protein 90α is involved in maintaining the stability of VP16 and VP16-mediated transactivation of α genes from herpes simplex virus-1.
    Wang Y, Wang R, Li F, Wang Y, Zhang Z, Wang Q, Ren Z, Jin F, Kitazato K, Wang Y.
    Mol Med; 2018 Dec 22; 24(1):65. PubMed ID: 30577726
    [Abstract] [Full Text] [Related]


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