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Molecular engineering of the herpes simplex virus genome: insertion of a second L-S junction into the genome causes additional genome inversions.
Cell. 1980 Nov;22(1 Pt 1):243-55
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A vector for expressing GAL4(1-147) fusions in mammalian cells.
Nucleic Acids Res. 1989 Sep 25;17(18):7539
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Site-specific inversion sequence of the herpes simplex virus genome: domain and structural features.
Proc Natl Acad Sci U S A. 1981 Nov;78(11):7047-51
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The herpes simplex virus amplicon: a new eucaryotic defective-virus cloning-amplifying vector.
Cell. 1982 Aug;30(1):295-304
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Herpesvirus-dependent amplification and inversion of cell-associated viral thymidine kinase gene flanked by viral a sequences and linked to an origin of viral DNA replication.
Proc Natl Acad Sci U S A. 1982 Sep;79(18):5626-30
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Structure and role of the herpes simplex virus DNA termini in inversion, circularization and generation of virion DNA.
Cell. 1982 Nov;31(1):89-97
PMID: 6297756
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Characterization of a viable, noninverting herpes simplex virus 1 genome derived by insertion and deletion of sequences at the junction of components L and S.
Proc Natl Acad Sci U S A. 1983 May;80(9):2690-4
PMID: 6302700
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Unstable heterozygosity in a diploid region of herpes simplex virus DNA.
J Virol. 1984 Feb;49(2):356-62
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The double-strand-break repair model for recombination.
Cell. 1983 May;33(1):25-35
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A noninverting genome of a viable herpes simplex virus 1: presence of head-to-tail linkages in packaged genomes and requirements for circularization after infection.
J Virol. 1985 Feb;53(2):587-95
PMID: 2982037
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In phage lambda, cos is a recombinator in the red pathway.
J Mol Biol. 1985 Jan 20;181(2):199-209
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Signals for site-specific cleavage of HSV DNA: maturation involves two separate cleavage events at sites distal to the recognition sequences.
Cell. 1985 Jul;41(3):793-802
PMID: 2988788
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Isomerization of herpes simplex virus 1 genome: identification of the cis-acting and recombination sites within the domain of the a sequence.
Cell. 1985 Jul;41(3):803-11
PMID: 2988789
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Nucleotide sequence and structural features of a novel US-a junction present in a defective herpes simplex virus genome.
J Virol. 1985 Jul;55(1):140-6
PMID: 2989551
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Application of the mini-Mu-phage for target-sequence-specific insertional mutagenesis of the herpes simplex virus genome.
Proc Natl Acad Sci U S A. 1985 Jul;82(14):4773-7
PMID: 2991892
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Intermolecular recombination of the herpes simplex virus type 1 genome analysed using two strains differing in restriction enzyme cleavage sites.
J Gen Virol. 1985 Dec;66 ( Pt 12):2659-70
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Generation of an inverting herpes simplex virus 1 mutant lacking the L-S junction a sequences, an origin of DNA synthesis, and several genes including those specifying glycoprotein E and the alpha 47 gene.
J Virol. 1986 May;58(2):583-91
PMID: 3009870
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The herpes simplex virus 1 segment inversion site is specifically cleaved by a virus-induced nuclear endonuclease.
Proc Natl Acad Sci U S A. 1991 Aug 1;88(15):6432-6
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Herpes simplex virus type 1 recombination: role of DNA replication and viral a sequences.
J Virol. 1992 Jan;66(1):277-85
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The herpes simplex virus type 1 (HSV-1) a sequence serves as a cleavage/packaging signal but does not drive recombinational genome isomerization when it is inserted into the HSV-2 genome.
J Virol. 1992 Dec;66(12):7505-10
PMID: 1331535
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Recombination in vitro between herpes simplex virus type 1 a sequences.
Proc Natl Acad Sci U S A. 1992 Nov 15;89(22):10950-4
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Herpes simplex virus 1 recombinants with noninverting genomes frozen in different isomeric arrangements are capable of independent replication.
J Virol. 1986 Aug;59(2):494-9
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Functional domains within the a sequence involved in the cleavage-packaging of herpes simplex virus DNA.
J Virol. 1986 Sep;59(3):605-18
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A method for identifying the viral genes required for herpesvirus DNA replication.
Proc Natl Acad Sci U S A. 1986 Dec;83(23):9094-8
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The segment inversion site of herpes simplex virus type 1 adopts a novel DNA structure.
J Biol Chem. 1987 May 5;262(13):6407-16
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Double-chain-cut sites are recombination hotspots in the Red pathway of phage lambda.
J Mol Biol. 1987 May 5;195(1):75-87
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Evidence that the normal route of replication-allowed Red-mediated recombination involves double-chain ends.
EMBO J. 1987 Oct;6(10):3171-6
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Inversion events in the HSV-1 genome are directly mediated by the viral DNA replication machinery and lack sequence specificity.
Cell. 1988 Jul 29;54(3):369-81
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Herpes simplex virus type 1 DNA cleavage and encapsidation require the product of the UL28 gene: isolation and characterization of two UL28 deletion mutants.
J Virol. 1993 Jun;67(6):3470-80
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Herpes simplex virus 1 single-strand DNA-binding protein (ICP8) will promote homologous pairing and strand transfer.
J Mol Biol. 1993 May 20;231(2):241-50
PMID: 8389882
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Novel rearrangements of herpes simplex virus DNA sequences resulting from duplication of a sequence within the unique region of the L component.
J Virol. 1985 Feb;53(2):456-61
PMID: 2982031
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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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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 partial denaturation map of herpes simplex virus type 1 DNA: evidence for inversions of the unique DNA regions.
J Gen Virol. 1976 Oct;33(1):125-33
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Inducible expression and cytogenetic effects of the EcoRI restriction endonuclease in Chinese hamster ovary cells.
Mol Cell Biol. 1988 Oct;8(10):4204-11
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Enhanced rate of conversion or recombination of markers within a region of unique sequence in the herpes simplex virus genome.
J Virol. 1986 May;58(2):704-8
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Recombinogenic properties of herpes simplex virus type 1 DNA sequences resident in simian virus 40 minichromosomes.
J Virol. 1990 Jan;64(1):300-6
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Sequence requirements for DNA rearrangements induced by the terminal repeat of herpes simplex virus type 1 KOS DNA.
J Virol. 1990 Oct;64(10):5036-50
PMID: 2168985
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Nucleotide sequences of the joint between the L and S segments of herpes simplex virus types 1 and 2.
J Gen Virol. 1981 Aug;55(Pt 2):315-31
PMID: 6270266