Inhibition of transcription of cytosine-containing DNA in vitro by the alc gene product of bacteriophage T4 (original) (raw)
Transcription from bacteriophage T7 and SP6 RNA polymerase promoters in the presence of 3'-deoxyribonucleoside 5'-triphosphate chain terminators
Fred Kramer
Biochemistry, 1985
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Identification and characterization of the alc gene product of bacteriophage T4
Elizabeth Kutter
Genetics, 1984
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Alteration of the −35 and −10 sequences and deletion the upstream sequence of the −35 region of the promoter A1 of the phage T7 in dsDNA confirm the contribution of non-specific interactions with E. coli RNA polymerase to the transcription initiation process
Katarzyna Turecka
Frontiers in Molecular Biosciences, 2024
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Fidelity of in Vitro Transcription of T3 Deoxyribonucleic Acid by Bacteriophage T3-induced Ribonucleic Acid Polymerase and by Escherichia coli Ribonucleic Acid Polymerase
Pradip Bandyopadhyay
Journal of Biological Chemistry, 1974
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Specificity of Ribonucleic Acid Chain Initiation by Bacteriophage T3-induced Ribonucleic Acid Polymerase
Prasanta chakraborty
Journal of Biological Chemistry, 1974
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Initiation of transcription by RNA polymerases ofE. coliand phage T3
Ewald Beck
FEBS Letters, 1973
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T7 Phage Protein Gp2 Inhibits the Escherichia Coli RNA Polymerase by Antagonizing Stable DNA Strand Separation Near the Transcription Start Site
Robert Weinzierl
Proceedings of the …, 2010
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Interaction of bacterial RNA-polymerase with two different promoters of phage T7 DNA. Conformational analysis
O. Ozoline
Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression, 1993
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Kinetics of the Alteration and Modification of DNA-Dependent RNA-Polymerase in T4-Infected E. coli Cells
P. Qasba
European Journal of Biochemistry, 1969
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Isolation and characterization of transducing phage coding for sigma subunit of Escherichia coli RNA polymerase
Richard Burgess
Proceedings of the National Academy of Sciences of the United States of America, 1979
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On the control of transcription of bacteriophage Mu
Willem Stevens
MGG Molecular & General Genetics, 1974
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Inhibition of Escherichia coli RNA polymerase by bacteriophage T4 AsiA
Konstantin Severinov
Journal of Molecular Biology, 1998
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Electron Microscopy Analysis of the Interaction between Escherichia coli DNA-Dependent RNA Polymerase and the Replicative Form of Phage fd DNA. 2. Analysis of the Dissociation Kinetics
Paolo Giacomoni
European Journal of Biochemistry, 1977
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Specific contacts between the bacteriophage T3, T7, and SP6 RNA polymerases and their promoters
Ellen Jorgensen
Journal of Biological Chemistry, 1991
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Promoters Recognized by Escherichia coli RNA Polymerase Selected by Function: Highly Efficient Promoters from Bacteriophage T5 Downloaded from
Reiner Gentz
JOURNAL OF BACTERIOLOGY, Oct. p. 70-77, 1985
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The Restriction of Non-Glucosylated T-Even-Bacteriophage Dna by Escherichia Coli
Martinez Hewlett
1973
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A gene of bacteriophage T4 whose product prevents true late transcription on cytosine-containing T4 DNA
Elizabeth Kutter
Proceedings of the National Academy of Sciences, 1976
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The Interaction between the AsiA Protein of Bacteriophage T4 and the sigma 70 Subunit of Escherichia coli RNA Polymerase
Annie Kolb
Journal of Biological Chemistry, 1997
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Bacteriophage T4 Alc protein: A transcription termination factor sensing local modification of DNA
Elizabeth Kutter
Cell, 1993
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T4 early promoter strength probed in vivo with unribosylated and ADP-ribosylated Escherichia coli RNA polymerase: a mutation analysis
E. Gineikiene
Microbiology (Reading, England), 2000
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The production of undegraded cytosine-containing DNA by bacteriophage T4 in the absence of dCTPase and endonucleases II and IV, and its effects on T4-directed protein synthesis
Elizabeth Kutter
Journal of Molecular Biology, 1975
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Discrimination between bacteriophage T3 and T7 promoters by the T3 and T7 RNA polymerases depends primarily upon a three base-pair region located 10 to 12 base-pairs upstream from the start site
Ellen Jorgensen
Journal of Molecular Biology, 1990
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Promoters recognized by Escherichia coli RNA polymerase selected by function: highly efficient promoters from bacteriophage T5
Reiner Gentz
Journal of Bacteriology, 1985
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Purification and properties of bacteriophage T4-induced RNA ligase
Frederic A Troy II
Archives of Biochemistry and Biophysics, 1976
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Molecular Mechanism of Transcription Inhibition by Phage T7 gp2 Protein
Vladimir Mekler
Journal of Molecular Biology, 2011
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The Role of the T7 Gp2 Inhibitor of Host RNA Polymerase in Phage Development
Konstantin Severinov
Journal of Molecular Biology, 2010
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Transcriptional activator of phage ?29 late promoter: mapping of residues involved in interaction with RNA polymerase and in DNA bending
María Monsalve
Molecular Microbiology, 1996
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Transcription in bacteriophage f1-infected Escherichia coli: Very large RNA species are synthesized on the phage DNA
Vincenzo Enea, M. La Farina
MGG Molecular & General Genetics, 1983
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Transcription Activation or Repression by Phage Φ29 Protein p4 Depends on the Strength of the RNA Polymerase–Promoter Interactions
María Monsalve
Molecular Cell, 1997
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The complex pattern of transcription in the segment of the bacteriophage T4 genome containing three of the head protein genes
George Kassavetis
Virology, 1984
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Contacts between Escherichia coli RNA polymerase and an early promoter of phage T7
W. Gilbert
Proceedings of the National …, 1980
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In Vivo Transcription Studies of Coliphage 186
Barry Egan
Journal of Virology, 1981
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Physical mapping of hybrid bacteriophage T7/T3 RNA polymerase genes
David McConnell
Journal of virology, 1982
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Mutant bacteriophage T7 RNA polymerases with altered termination properties 1 1 Edited by M. Gottesman
Dmitry Lyakhov
Journal of Molecular Biology, 1997
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Interaction of Escherichia coli RNA polymerase with promoters of several coliphage and plasmid DNAs
Alexander Von Gabain
Proceedings of the National Academy of Sciences, 1979
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