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Evidence for a dual role for the bacteriophage T4-induced deoxycytidine triphosphate nucleotidohydrolase.
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The folded genome of Escherichia coli isolated in a protein-DNA-RNA complex.
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Nat New Biol. 1973 Aug 1;244(135):137-40
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Isolation and preliminary characterization of T4 mutants with nonglucosylated DNA.
Biochem Biophys Res Commun. 1967 Jul 21;28(2):179-84
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The utilization of host pyrimidines in the synthesis of bacterial viruses.
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Regulation of rII and region D transcription in T4 bacteriophage: a sucrose gradient analysis.
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Interference of bacteriophage T4 in the reproduction of RNA-phage M12.
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The function of T4 DNA polymerase.
Cold Spring Harb Symp Quant Biol. 1968;33:345-50
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Effect of elevated temperature on deoxyribonucleic acid synthesis in bacteriophage phi-29-infected Bacillus amyloliquefaciens.
J Virol. 1970 Oct;6(4):430-7
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Proteins associated with ribosomes in T4-infected E. coli.
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A mutant of bacteriophage T4 defective in alpha-glucosyl transferase.
Biochem Biophys Res Commun. 1967 May 5;27(3):294-8
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Mutants of bacteriophage T4 defective in the induction of T4 endonuclease II.
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T4 endonuclease IV. Improved purification procedure and resolution from T4 endonuclease 3.
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Deoxycytidine triphosphatase, an enzyme induced by bacteriophage infection.
J Biol Chem. 1960 Sep;235:2691-7
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Identification of phage SP01 proteins coded by regulatory genes 33 and 34.
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Membrane-associated proteins of T4-infected Escherichia coli.
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Effect of rifampin on the structure and membrane attachment of the nucleoid of Escherichia coli.
J Bacteriol. 1973 Dec;116(3):1364-74
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Physical mapping of T7 messenger RNA.
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Degradation of Escherichia coli B deoxyribonucleic acid after infection with deoxyribonucleic acid-defective amber mutants of bacteriophage T7.
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Development of coliphage T5: ultrastructural and biochemical studies.
J Virol. 1972 Mar;9(3):526-43
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Identification and preliminary characterization of a mutant defective in the bacteriophage T4-induced unfolding of the Escherichia coli nucleoid.
J Virol. 1976 Feb;17(2):622-41
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Letter to the editor: Bacteriophage T4 transcriptional control gene 55 codes for a protein bound to Escherichia coli RNA polymerase.
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Protein synthesis by Escherichia coli infected with bacteriophage T4D.
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The enzymic synthesis of 5-hydroxymethyldeoxycytidylic acid.
Biochim Biophys Acta. 1957 Sep;25(3):667-8
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Modulation of RNA polymerase specificity by ppGpp.
Mol Gen Genet. 1976 Aug 19;147(2):225-32
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Isolation of membrane-associated folded chromosomes from Escherichia coli: effect of protein synthesis inhibition.
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The requirement for potassium for bacteriophage T4 protein and deoxyribonucleic acid synthesis.
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HYDROXYMETHYLDEOXYCYTIDYLATE KINASE FORMATION AFTER BACTERIOPHAGE INFECTION OF ESCHERICHIA COLI.
Proc Natl Acad Sci U S A. 1959 Aug;45(8):1240-5
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Control of translation by T4 phage: altered binding of disfavoured messengers.
Nature. 1970 May 30;226(5248):820-3
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A new change in leucine transfer RNA observed in Escherichia coli infected with bacteriophage T2.
Proc Natl Acad Sci U S A. 1967 Apr;57(4):979-85
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Characterization of leucine transfer ribonucleic acid in Escherichia coli following infection with bacteriophage T2.
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Presence of active polyribosomes in bacterial cells infected with T4 bacteriophage ghosts.
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Studies with DNA-cellulose chromatography. I. DNA-binding proteins from Escherichia coli.
Cold Spring Harb Symp Quant Biol. 1968;33:289-305
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RNA metabolism in Escherichia coli infected with bacteriophage T4. Inhibition of host ribosomal and soluble RNA synthesis by phage and effect of chloromycetin.
J Mol Biol. 1962 May;4:376-87
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A T4-induced endonuclease which attacks T4 DNA.
Proc Natl Acad Sci U S A. 1970 Jul;66(3):716-21
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Effect of hydroxyurea on replication of bacteriophage T4 in Escherichia coli.
J Virol. 1969 Mar;3(3):331-6
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Continued synthesis of bacterial DNA after infection by bacteriophage T4.
J Virol. 1974 Apr;13(4):847-57
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Separation and characterization of deoxyribonucleases of Escherichia coli B. I. Chromatographic separation and properties of two deoxyribo-oligonucleotidases.
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Enzymatic synthesis of deoxyribonucleic acid. XXV. Purification and properties of deoxyribonucleic acid polymerase induced by infection with phage T4.
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Nucleic acid metabolism in Escherichia coli infected with phage T5.
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Incorporation of uracil-14C into nucleic acids in Escherichia coli infected with bacteriophage T4 and T4 amber mutants.
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In vivo and in vitro phosphorylation of DNA-dependent RNA polymerase of Escherichia coli by bacteriophage-T7-induced protein kinase.
Proc Natl Acad Sci U S A. 1975 Jul;72(7):2506-10
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Phosphorus incorporation in Escherichia coli ribo-nucleic acid after infection with bacteriophage T2.
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Direct participation of dCMP hydroxymethylase in synthesis of bacteriophage T4 DNA.
Proc Natl Acad Sci U S A. 1973 Aug;70(8):2196-200
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Isolation of bacteriophage T4 mutants defective in the ability to degrade host deoxyribonucleic acid.
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Comparative studies on membrane-associated, folded chromosomes from Escherichia coli.
J Bacteriol. 1976 Apr;126(1):64-71
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J Virol. 1974 Aug;14(2):207-13
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Stability of cytosine-containing deoxyribonucleic acid after infection by certain T4 rII-D deletion mutants.
J Virol. 1972 Jul;10(1):88-92
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Messenger discriminating species of initiation factor F3.
Nat New Biol. 1971 Dec 22;234(51):236-9
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Mutants in a nonessential gene of bacteriophage T4 which are defective in the degradation of Escherichia coli deoxyribonucleic acid.
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Enzymes of nucleic acid metabolism.
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Outer-membrane proteins induced by T4 bacteriophage.
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Properties of membrane-associated folded chromosomes of E. coli related to initiation and termination of DNA replication.
Cell. 1975 Apr;4(4):337-45
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Bacteriophage T4 transfer RNA. 3. Clustering of the genes for the T4 transfer RNA's.
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Mutants of bacteriophage T4 deficient in the ability to induce nuclear disruption. I. Isolation and genetic characterization.
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Properties of a membrane-attached form of the folded chromosome of Escherichia coli.
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Chromatin staining of bacteria during bacteriophage infection.
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Selective translation of T4 template RNA by ribosomes from T4-infected Escherichia coli.
Proc Natl Acad Sci U S A. 1969 Sep;64(1):345-51
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Genetic location of a mutant of bacteriophage T4 deficient in the ability to induce endonuclease II.
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Biological activity of bacteriophage ghosts and "take-over" of host functions by bacteriophage.
Bacteriol Rev. 1970 Sep;34(3):344-63
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Mutants of bacteriophage T4 unable to cause breakdown of host DNA.
Proc Natl Acad Sci U S A. 1966 Mar;55(3):614-21
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Identification and genetic characterization of mutants of bacteriophage T4 defective in the ability to induce exonuclease A.
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RNA molecules bound to the folded bacterial genome stabilize DNA folds and segregate domains of supercoiling.
Cold Spring Harb Symp Quant Biol. 1974;38:31-41
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New small polypeptides associated with DNA-dependent RNA polymerase of Escherichia coli after infection with bacteriophage T4.
Proc Natl Acad Sci U S A. 1972 Mar;69(3):603-7
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Cytological changes in Escherichia coli produced by infection with phage T2.
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J Virol. 1977 Dec;24(3):775-85
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Studies on the folded chromosome of Escherichia coli.
Cold Spring Harb Symp Quant Biol. 1974;38:43-51
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Proc Natl Acad Sci U S A. 1964 Dec;52:1535-40
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Biochemical studies of virus reproduction. VIII. Purine metabolism.
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Cold Spring Harb Symp Quant Biol. 1953;18:209-20
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Conservation of the rifamycin sensitivity of transcription during T4 development.
Nature. 1969 Mar 1;221(5183):836-8
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Mechanism of repair of DNA in bacteriophage. II. Inability of ultraviolet-sensitive strains of bacteriophage in inducing an enzyme activity to excise pyrimidine dimers.
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Early synthesis of membrane protein after bacteriophage T4 infection.
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Chemical structure of a modification of the Escherichia coli ribonucleic acid polymerase alpha polypeptides induced by bacteriophage T4 infection.
J Biol Chem. 1974 Oct 10;249(19):6181-90
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Transcription unit mapping in bacteriophage T7. I. In vivo transcription by Escherichia coli RNA polymerase.
J Virol. 1973 Oct;12(4):882-6
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Eight transfer RNAs induced by infection of Escherichia coli with bacteriophage T4.
Proc Natl Acad Sci U S A. 1972 Dec;69(12):3703-7
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New dUTPase and dUDPase activites after infection of Escherichia coli by T2 bacteriophage.
Proc Natl Acad Sci U S A. 1966 Oct;56(4):1226-32
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Characterization of an inhibitor causing potassium chloride sensitivity of an RNA polymerase from T4 phage-infected Escherichia coli.
Biochemistry. 1975 Nov 18;14(23):5074-9
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Effects of bacteriophage T4-induced modification of Escherichia coli RNA polymerase on gene expression in vitro.
Proc Natl Acad Sci U S A. 1975 Dec;72(12):4928-32
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Metabolism of T4 bacteriophage ghost-infected cells. II. Do ghosts cause a generalized permeability change?
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Proc Natl Acad Sci U S A. 1963 Sep;50:507-13
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On the structure of the folded chromosome of Escherichia coli.
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Electron microscopic studies on the folded chromosome of Escherichia coli.
Cold Spring Harb Symp Quant Biol. 1974;38:53-8
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Comparison of the effects of bacteriophage T4 infection and N-ethylmaleimide on the translational specificity of Escherichia coli ribosomes.
Arch Biochem Biophys. 1975 Feb;166(2):549-58
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Detection of bacteriophage T4- and T5-coded transfer RNAs.
Proc Natl Acad Sci U S A. 1970 Nov;67(3):1164-71
PMID: 5274446
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Physical mapping of the early region of bacteriophage T7 DNA.
J Mol Biol. 1973 Sep 15;79(2):249-65
PMID: 4586410
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Protein synthesis in bacteriophage ghost-infected cells.
J Virol. 1976 Apr;18(1):103-10
PMID: 176455
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Bacteriophage T4 mutants deficient in alteration and modification of the Escherichia coli RNA polymerase.
J Mol Biol. 1974 Dec 25;90(4):739-50
PMID: 4615179
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DNA-glucosylation in T-even phage: genetic determination and role in phagehost interaction.
Annu Rev Genet. 1970;4(0):177-92
PMID: 4950809
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The protein coats or ghosts of coli phage T2. II. The biological functions.
J Gen Physiol. 1957 Nov 20;41(2):307-31
PMID: 13475694
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Glucosylation of deoxyribonucleic acid. III. alpha- and beta-Glucosyl transferases from T4-infected Escherichia coli.
J Biol Chem. 1962 Jun;237:1968-76
PMID: 14452558
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Mutagenic treatment of double- and single-stranded DNA phages T4 ans S13 with hydroxylamine.
Virology. 1968 Jun;35(2):330-3
PMID: 5663335