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Adenine arabinoside effect on experimental idoxuridine-resistant herpes simplex infection.
Invest Ophthalmol. 1974 Apr;13(4):302-4
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An improved method for cloning portions of the repeat regions of herpes simplex virus type 1.
J Virol Methods. 1994 Feb;46(2):111-6
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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
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Detection of latency-related viral RNAs in trigeminal ganglia of rabbits latently infected with herpes simplex virus type 1.
J Virol. 1987 Dec;61(12):3820-6
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Latent herpes simplex virus in human trigeminal ganglia. Detection of an immediate early gene "anti-sense" transcript by in situ hybridization.
N Engl J Med. 1987 Dec 3;317(23):1427-32
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Physical characterization of the herpes simplex virus latency-associated transcript in neurons.
J Virol. 1988 Apr;62(4):1194-202
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Expression of herpes simplex virus type 1 latency-associated transcripts in the trigeminal ganglia of mice during acute infection and reactivation of latent infection.
J Virol. 1988 May;62(5):1479-85
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RNA complementary to herpes simplex virus type 1 ICP0 gene demonstrated in neurons of human trigeminal ganglia.
J Virol. 1988 May;62(5):1832-5
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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
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Latent herpes simplex virus type 1 transcription in human trigeminal ganglia.
J Virol. 1988 Sep;62(9):3493-6
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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
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Fine mapping of the latency-related gene of herpes simplex virus type 1: alternative splicing produces distinct latency-related RNAs containing open reading frames.
J Virol. 1988 Nov;62(11):4051-8
PMID: 2845123
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The DNA sequences of the long repeat region and adjoining parts of the long unique region in the genome of herpes simplex virus type 1.
J Gen Virol. 1988 Nov;69 ( Pt 11):2831-46
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The herpes simplex virus latency-associated transcript is spliced during the latent phase of infection.
J Virol. 1988 Dec;62(12):4577-85
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Fine mapping of the major latency-related RNA of herpes simplex virus type 1 in humans.
J Gen Virol. 1988 Dec;69 ( Pt 12):3101-6
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Sequence of the latency-related gene of herpes simplex virus type 1.
Virology. 1989 Jan;168(1):168-72
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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
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A deletion mutant of the latency-associated transcript of herpes simplex virus type 1 reactivates from the latent state with reduced frequency.
J Virol. 1989 Jul;63(7):2893-900
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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
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In vitro promoter activity associated with the latency-associated transcript gene of herpes simplex virus type 1.
J Gen Virol. 1989 Aug;70 ( Pt 8):2163-9
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Herpes simplex virus latent RNA (LAT) is not required for latent infection in the mouse.
Proc Natl Acad Sci U S A. 1989 Oct;86(19):7596-600
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Herpes simplex virus latent phase transcription facilitates in vivo reactivation.
Virology. 1990 Jan;174(1):117-25
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A fast, simple reactivation method for the study of HSV-1 latency in the rabbit ocular model.
Invest Ophthalmol Vis Sci. 1990 May;31(5):921-4
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A herpes simplex virus type 1 latency-associated transcript mutant reactivates with normal kinetics from latent infection.
J Virol. 1990 Jul;64(7):3417-26
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Quantitative polymerase chain reaction analysis of herpes simplex virus DNA in ganglia of mice infected with replication-incompetent mutants.
J Virol. 1990 Sep;64(9):4288-95
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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
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The promoter of the latency-associated transcripts of herpes simplex virus type 1 contains a functional cAMP-response element: role of the latency-associated transcripts and cAMP in reactivation of viral latency.
Proc Natl Acad Sci U S A. 1991 Jan 1;88(1):48-52
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Identification of a major regulatory sequence in the latency associated transcript (LAT) promoter of herpes simplex virus type 1 (HSV-1).
Virology. 1991 May;182(1):287-97
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In vivo and in vitro reactivation impairment of a herpes simplex virus type 1 latency-associated transcript variant in a rabbit eye model.
J Virol. 1991 Dec;65(12):6989-93
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Herpes simplex virus type 1 latency-associated transcription unit promotes anatomical site-dependent establishment and reactivation from latency.
J Virol. 1992 Apr;66(4):2157-69
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Direct inactivation of herpes simplex virus type-2 by rat epidermal protein.
Antiviral Res. 1992 Jun;18(2):179-89
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Detection of latent herpes simplex virus DNA and RNA in human geniculate ganglia by the polymerase chain reaction.
Acta Otolaryngol. 1992 Nov;112(6):1004-11
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Molecular analysis of herpes simplex virus type 1 during epinephrine-induced reactivation of latently infected rabbits in vivo.
J Virol. 1994 Mar;68(3):1283-92
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A novel latency-active promoter is contained within the herpes simplex virus type 1 UL flanking repeats.
J Virol. 1994 Apr;68(4):2239-52
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Versatile expression vectors for high-level synthesis of cloned gene products in Escherichia coli.
Gene. 1985;38(1-3):31-8
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