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Characterization of herpes simplex virus 1 alpha proteins 0, 4, and 27 with monoclonal antibodies.
J Virol. 1984 Oct;52(1):108-18
PMID: 6090689
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Separation of sequences defining basal expression from those conferring alpha gene recognition within the regulatory domains of herpes simplex virus 1 alpha genes.
Proc Natl Acad Sci U S A. 1984 Jul;81(13):4065-9
PMID: 6330737
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Association of the herpes simplex virus regulatory protein ICP4 with specific nucleotide sequences in DNA.
Nucleic Acids Res. 1986 Aug 11;14(15):6067-83
PMID: 3018669
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RNA complementary to a herpesvirus alpha gene mRNA is prominent in latently infected neurons.
Science. 1987 Feb 27;235(4792):1056-9
PMID: 2434993
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Detection of herpes simplex virus type 1 transcripts during latent infection in mice.
J Virol. 1987 Dec;61(12):3841-7
PMID: 2824818
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An inquiry into the mechanisms of herpes simplex virus latency.
Annu Rev Microbiol. 1987;41:543-71
PMID: 2825588
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The complete DNA sequence of the long unique region in the genome of herpes simplex virus type 1.
J Gen Virol. 1988 Jul;69 ( Pt 7):1531-74
PMID: 2839594
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Expression of herpes simplex virus type 1 (HSV-1) latency-associated transcripts and transcripts affected by the deletion in avirulent mutant HFEM: evidence for a new class of HSV-1 genes.
J Virol. 1988 Sep;62(9):3281-7
PMID: 2841480
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A herpes simplex virus transcript abundant in latently infected neurons is dispensable for establishment of the latent state.
Virology. 1988 Sep;166(1):254-7
PMID: 2842950
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Herpes simplex virus type 1 latency-associated transcripts are evidently not essential for latent infection.
EMBO J. 1989 Feb;8(2):505-11
PMID: 2542019
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DNA binding by the herpes simplex virus type 1 ICP4 protein is necessary for efficient down regulation of the ICP0 promoter.
J Virol. 1989 Jun;63(6):2497-503
PMID: 2542567
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Identification of the latency-associated transcript promoter by expression of rabbit beta-globin mRNA in mouse sensory nerve ganglia latently infected with a recombinant herpes simplex virus.
J Virol. 1989 Sep;63(9):3844-51
PMID: 2474674
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Herpes simplex virus type 1 latency-associated transcription plays no role in establishment or maintenance of a latent infection in murine sensory neurons.
J Virol. 1989 Oct;63(10):4455-8
PMID: 2550678
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Mapping of low abundance latency-associated RNA in the trigeminal ganglia of mice latently infected with herpes simplex virus type 1.
J Gen Virol. 1990 Jan;71 ( Pt 1):125-32
PMID: 2154530
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Mutational analysis of the promoter region of the alpha 27 gene of herpes simplex virus 1 within the context of the viral genome.
Proc Natl Acad Sci U S A. 1990 Jul;87(14):5268-72
PMID: 2164672
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Activity of herpes simplex virus type 1 latency-associated transcript (LAT) promoter in neuron-derived cells: evidence for neuron specificity and for a large LAT transcript.
J Virol. 1990 Oct;64(10):5019-28
PMID: 2168984
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The promoter, transcriptional unit, and coding sequence of herpes simplex virus 1 family 35 proteins are contained within and in frame with the UL26 open reading frame.
J Virol. 1991 Jan;65(1):206-12
PMID: 1845885
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The Vmw175 binding site in the IE-1 promoter has no apparent role in the expression of Vmw110 during herpes simplex virus type 1 infection.
Virology. 1991 Feb;180(2):509-17
PMID: 1846487
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Relationship between polyadenylated and nonpolyadenylated herpes simplex virus type 1 latency-associated transcripts.
J Virol. 1991 May;65(5):2179-90
PMID: 1850005
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Expression of the herpes simplex virus 1 alpha transinducing factor (VP16) does not induce reactivation of latent virus or prevent the establishment of latency in mice.
J Virol. 1991 Jun;65(6):2929-35
PMID: 1851865
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Role of alpha-transinducing factor (VP16) in the induction of alpha genes within the context of viral genomes.
J Virol. 1991 Jul;65(7):3504-13
PMID: 1645782
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Identification of a promoter mapping within the reiterated sequences that flank the herpes simplex virus type 1 UL region.
J Virol. 1993 Feb;67(2):632-42
PMID: 8380459
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Construction and properties of a recombinant herpes simplex virus 1 lacking both S-component origins of DNA synthesis.
J Virol. 1993 Apr;67(4):2123-32
PMID: 8383234
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Repression of the herpes simplex virus 1 alpha 4 gene by its gene product occurs within the context of the viral genome and is associated with all three identified cognate sites.
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2286-90
PMID: 8384719
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A novel class of transcripts expressed with late kinetics in the absence of ICP4 spans the junction between the long and short segments of the herpes simplex virus type 1 genome.
J Virol. 1993 Dec;67(12):7373-82
PMID: 7901428
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Binding and repression of the latency-associated promoter of herpes simplex virus by the immediate early 175K protein.
J Gen Virol. 1994 Apr;75 ( Pt 4):753-67
PMID: 8151293
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The role of ICP4 repressor activity in temporal expression of the IE-3 and latency-associated transcript promoters during HSV-1 infection.
Virology. 1994 Aug 1;202(2):550-64
PMID: 8030221
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Expression of a herpes simplex virus 1 open reading frame antisense to the gamma(1)34.5 gene and transcribed by an RNA 3' coterminal with the unspliced latency-associated transcript.
J Virol. 1994 Sep;68(9):6021-8
PMID: 8057477
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Anatomy of herpes simplex virus DNA. II. Size, composition, and arrangement of inverted terminal repetitions.
J Virol. 1975 Jun;15(6):1487-97
PMID: 167196
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Characterization of herpes simplex virus strains differing in their effects on social behaviour of infected cells.
J Gen Virol. 1968 May;2(3):357-64
PMID: 4300104
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Regulation of herpesvirus macromolecular synthesis. I. Cascade regulation of the synthesis of three groups of viral proteins.
J Virol. 1974 Jul;14(1):8-19
PMID: 4365321
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Regulation of herpesvirus macromolecular synthesis: sequential transition of polypeptide synthesis requires functional viral polypeptides.
Proc Natl Acad Sci U S A. 1975 Apr;72(4):1276-80
PMID: 165503
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Inverted repetitions in the chromosome of herpes simplex virus.
Cold Spring Harb Symp Quant Biol. 1975;39 Pt 2:667-78
PMID: 169022
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Anatomy of herpes simplex virus DNA: evidence for four populations of molecules that differ in the relative orientations of their long and short components.
Proc Natl Acad Sci U S A. 1975 Nov;72(11):4243-7
PMID: 172900
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A new method for the isolation of herpes simplex virus type 2 DNA.
Virology. 1976 Oct 1;74(1):256-8
PMID: 185791
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Recombinants between herpes simplex virus types 1 and 2: analyses of genome structures and expression of immediate early polypeptides.
J Virol. 1978 Nov;28(2):499-517
PMID: 214575
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The use of intertypic recombinants for analysis of gene organization in herpes simplex virus.
IARC Sci Publ. 1978;(24 Pt 1):41-61
PMID: 221347
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Orientation of herpes simplex virus type 1 immediate early mRNA's.
Nucleic Acids Res. 1979 Sep 11;7(1):77-91
PMID: 226944
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Regulation of alpha genes of herpes simplex virus: expression of chimeric genes produced by fusion of thymidine kinase with alpha gene promoters.
Cell. 1981 May;24(2):555-65
PMID: 6263501
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A generalized technique for deletion of specific genes in large genomes: alpha gene 22 of herpes simplex virus 1 is not essential for growth.
Cell. 1981 Jul;25(1):227-32
PMID: 6268303
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Structural features of the herpes simplex virus alpha gene 4, 0, and 27 promoter-regulatory sequences which confer alpha regulation on chimeric thymidine kinase genes.
J Virol. 1982 Dec;44(3):939-49
PMID: 6294341
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Characterization of the herpes simplex virion-associated factor responsible for the induction of alpha genes.
J Virol. 1983 May;46(2):371-7
PMID: 6302308
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Identification by antibody to a synthetic peptide of a protein specified by a diploid gene located in the terminal repeats of the L component of herpes simplex virus genome.
J Virol. 1986 Jun;58(3):843-50
PMID: 3009891