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XACT-Seq Comprehensively Defines the Promoter-Position and Promoter-Sequence Determinants for Initial-Transcription Pausing
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Structural basis of reiterative transcription from the pyrG and pyrBI promoters by bacterial RNA polymerase
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Attenuation control of pyrG expression in Bacillus subtilis is mediated by CTP-sensitive reiterative transcription
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Termination and Slippage by Bacteriophage T7 RNA Polymerase
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Recent Advances in Understanding σ70-Dependent Transcription Initiation Mechanisms
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Regulation of upp expression in Escherichia coli by UTP-sensitive selection of transcriptional start sites coupled with UTP-dependent reiterative transcription
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Open complex scrunching before nucleotide addition accounts for the unusual transcription start site of E. coli ribosomal RNA promoters
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Bacterial Sigma Factors: A Historical, Structural, and Genomic Perspective
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Open complex DNA scrunching: A key to transcription start site selection and promoter escape
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Structural Basis for NusA Stabilized Transcriptional Pausing
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Multiplexed protein-DNA cross-linking: Scrunching in transcription start site selection
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Massively Systematic Transcript End Readout, “MASTER”: Transcription Start Site Selection, Transcriptional Slippage, and Transcript Yields
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Crosslink Mapping at Amino Acid-Base Resolution Reveals the Path of Scrunched DNA in Initial Transcribing Complexes
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Transcriptional Slippage During the Transcription Initiation Process at a Mutant lac Promoter in Vivo
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Direct Observation of Abortive Initiation and Promoter Escape within Single Immobilized Transcription Complexes
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Regulation ofcodBAOperon Expression inEscherichia coliby UTP-dependent Reiterative Transcription and UTP-sensitive Transcriptional Start Site Switching
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Regulation of pyrG expression in Bacillus subtilis: CTP-regulated antitermination and reiterative transcription with pyrG templates in vitro
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Heterogeneous initiation due to slippage at the bacteriophage 82 late gene promoter in vitro
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Diverse and unified mechanisms of transcription initiation in bacteria
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Single-molecule DNA nanomanipulation: Improved resolution through use of shorter DNA fragments
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The RNA polymerase clamp interconverts dynamically among three states and is stabilized in a partly closed state by ppGpp
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Structural Organization of Bacterial RNA Polymerase Holoenzyme and the RNA Polymerase-Promoter Open Complex
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In Vitro Studies of Transcript Initiation by Escherichia coli RNA Polymerase. 1. RNA Chain Initiation, Abortive Initiation, and Promoter Escape at Three Bacteriophage Promoters †
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Structural Basis of Transcription Initiation by Bacterial RNA Polymerase Holoenzyme
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X-ray crystal structure of a reiterative transcription complex reveals an atypical RNA extension pathway
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RNA extension drives a stepwise displacement of an initiation-factor structural module in initial transcription
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Crystal structure of a bacterial RNA polymerase holoenzyme at 2.6 Å resolution
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RNA Polymerase Accommodates a Pause RNA Hairpin by Global Conformational Rearrangements that Prolong Pausing
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Regulation of pyrBI operon expression in Escherichia coli by UTP-sensitive reiterative RNA synthesis during transcriptional initiation.
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Molecular Evolution of Multisubunit RNA Polymerases: Sequence Analysis
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Cryo-EM structure of lysenin pore elucidates membrane insertion by an aerolysin family protein
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Closing and opening of the RNA polymerase trigger loop
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A Long T · A Tract in the upp Initially Transcribed Region Is Required for Regulation of upp Expression by UTP-Dependent Reiterative Transcription in Escherichia coli
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Regulation of Bacterial Gene Expression by Transcription Attenuation
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Crystal Structure of Thermus aquaticus Core RNA Polymerase at 3.3 Å Resolution
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Mechanism of RNA polymerase action: Characterization of the DNA-dependent synthesis of polyadenylic acid
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Regulation of carAB Expression in Escherichia coli Occurs in Part through UTP-Sensitive Reiterative Transcription
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Abortive Initiation and Productive Initiation by RNA Polymerase Involve DNA Scrunching
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Structural basis of transcription activation
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Initial Transcription by RNA Polymerase Proceeds Through a DNA-Scrunching Mechanism
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Structural Basis of Transcription Initiation
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Transcriptional slippage occurs during elongation at runs of adenine or thymine in Escherichia coli
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Structural Basis of Transcription Initiation: An RNA Polymerase Holoenzyme-DNA Complex
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Structural Basis of Transcription Initiation: RNA Polymerase Holoenzyme at 4 Å Resolution
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Topology of the product binding site in RNA polymerase revealed by transcript slippage at the phage lambda PL promoter.
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Opening and Closing of the Bacterial RNA Polymerase Clamp
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Deoxyribonucleic Acid-Directed Synthesis of Ribonucleic acid by an Enzyme from Escherichia coli
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