PHENIX: a comprehensive Python-based system for macromolecular structure solution
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January 2010 |
Promoter-proximal pausing of RNA polymerase II: emerging roles in metazoans
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September 2012 |
Topological unwinding of strong and weak promoters by RNA polymerase
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June 1987 |
CarD uses a minor groove wedge mechanism to stabilize the RNA polymerase open promoter complex
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September 2015 |
Region 2.5 of the Escherichia coli RNA polymerase σ70 subunit is responsible for the recognition of the 'extended −10' motif at promoters
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July 1997 |
Structural Basis of Transcription Initiation by Bacterial RNA Polymerase Holoenzyme
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June 2014 |
Nucleosomes Unfold Completely at a Transcriptionally Active Promoter
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June 2003 |
C-h⋯π-interactions in proteins
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March 2001 |
Crystallography & NMR System: A New Software Suite for Macromolecular Structure Determination
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September 1998 |
Kinetics of open complex formation between Escherichia coli RNA polymerase and the lac UV5 promoter. Evidence for a sequential mechanism involving three steps
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May 1985 |
Structure of the Bacterial RNA Polymerase Promoter Specificity σ Subunit
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March 2002 |
DNA-melting at the Bacillus subtilis flagellin promoter nucleates near −10 and expands unidirectionally
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March 1997 |
Structural Basis of Transcription: RNA Polymerase II at 2.8 Angstrom Resolution
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April 2001 |
Two amino acids in an RNA polymerase sigma factor involved in the recognition of adjacent base pairs in the -10 region of a cognate promoter.
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October 1990 |
Three-Dimensional Structure of the Tn5 Synaptic Complex Transposition Intermediate
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July 2000 |
Real-time footprinting of DNA in the first kinetically significant intermediate in open complex formation by Escherichia coli RNA polymerase
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April 2007 |
Improved R-factors for diffraction data analysis in macromolecular crystallography
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April 1997 |
Coot model-building tools for molecular graphics
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November 2004 |
A Basal Promoter Element Recognized by Free RNA Polymerase σ Subunit Determines Promoter Recognition by RNA Polymerase Holoenzyme
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July 2006 |
Structural Basis for Promoter −10 Element Recognition by the Bacterial RNA Polymerase σ Subunit
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December 2011 |
Bacterial Sigma Factors: A Historical, Structural, and Genomic Perspective
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September 2014 |
Effect of DNA bases and backbone on sigma70 holoenzyme binding and isomerization using fork junction probes
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June 2003 |
Escherichia coli promoter opening and −10 recognition: mutational analysis of σ70
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March 2000 |
Promoter recognition and discrimination by EsigmaS RNA polymerase
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November 2001 |
Direct Detection of Abortive RNA Transcripts in Vivo
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May 2009 |
One-step DNA melting in the RNA polymerase cleft opens the initiation bubble to form an unstable open complex
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May 2010 |
Molecular systematic studies of eubacteria, using sigma70-type sigma factors of group 1 and group 2.
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March 1997 |
Multiple Sigma Subunits and the Partitioning of Bacterial Transcription Space
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October 2003 |
Structural insights into transcription initiation by RNA polymerase II
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December 2013 |
rRNA Promoter Regulation by Nonoptimal Binding of σ Region 1.2: An Additional Recognition Element for RNA Polymerase
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June 2006 |
Structure and Function of Bacterial Sigma Factors
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June 1988 |
A Consensus Adenine at Position –11 of the Nontemplate Strand of Bacterial Promoter Is Important for Nucleation of Promoter Melting
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March 2006 |
Protein family annotation in a multiple alignment viewer
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March 2003 |
A Promoter Melting Region in the Primary σ Factor of Bacillus subtilis
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February 1994 |
Initial Transcription by RNA Polymerase Proceeds Through a DNA-Scrunching Mechanism
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November 2006 |
Linking Crystallographic Model and Data Quality
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May 2012 |
Genetic evidence that RNA polymerase associated with sigma A factor uses a sporulation-specific promoter in Bacillus subtilis.
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December 1989 |
Mechanism of ATP-Dependent Promoter Melting by Transcription Factor IIH
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May 2000 |
Kinetics of promoter escape by bacterial RNA polymerase: effects of promoter contacts and transcription bubble collapse
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September 2014 |
Solute Probes of Conformational Changes in Open Complex (RP o ) Formation by Escherichia coli RNA Polymerase at the λP R Promoter: Evidence for Unmasking of the Active Site in the Isomerization Step and for Large-Scale Coupled Folding in the Subsequent Conversion to RP o †
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February 2006 |
RNA polymerase II–TFIIB structure and mechanism of transcription initiation
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October 2009 |
Global Regulation of Promoter Melting in Naive Lymphocytes
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May 2013 |
Region 3.2 of the σ Subunit Contributes to the Binding of the 3′-Initiating Nucleotide in the RNA Polymerase Active Center and Facilitates Promoter Clearance during Initiation
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May 2006 |
Molecular Evolution of Multisubunit RNA Polymerases: Sequence Analysis
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January 2010 |
Crystal Structure of a Human Alkylbase-DNA Repair Enzyme Complexed to DNA
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October 1998 |
A "master" in base unpairing during isomerization of a promoter upon RNA polymerase binding
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December 2001 |
Structure of an RNA Polymerase II–TFIIB Complex and the Transcription Initiation Mechanism
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November 2009 |
The sigma 70 family: sequence conservation and evolutionary relationships.
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June 1992 |
Crystal Structure of a σ70 Subunit Fragment from E. coli RNA Polymerase
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October 1996 |
Rate-limiting steps in RNA chain initiation.
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October 1980 |
Mechanism and Control of Transcription Initiation in Prokaryotes
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June 1985 |
Phaser crystallographic software
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July 2007 |
Interaction of Escherichia coli RNA Polymerase σ 70 Subunit with Promoter Elements in the Context of Free σ 70 , RNA Polymerase Holoenzyme, and the β′-σ 70 Complex
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journal
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October 2010 |
Location of close contacts between Escherichia coli RNA polymerase and guanine residues at promoters either with or without consensus -35 region sequences
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February 1993 |
X-ray Crystal Structure of Escherichia coli RNA Polymerase σ 70 Holoenzyme
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February 2013 |
Structural Basis of Transcription Initiation: RNA Polymerase Holoenzyme at 4 Å Resolution
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May 2002 |
Crystallographic Analysis of Thermus aquaticus RNA Polymerase Holoenzyme and a Holoenzyme???Promoter DNA Complex
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January 2003 |
Structural Basis of Transcription Initiation: An RNA Polymerase Holoenzyme-DNA Complex
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May 2002 |
The interaction between 70 and the -flap of Escherichia coli RNA polymerase inhibits extension of nascent RNA during early elongation
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March 2005 |
[20] Processing of X-ray diffraction data collected in oscillation mode
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book
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January 1997 |
Aromatic amino acids in region 2.3 of Escherichia coli sigma 70 participate collectively in the formation of an RNA polymerase-promoter open complex
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June 2000 |
rRNA Transcription in Escherichia coli
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journal
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December 2004 |
Abortive Initiation and Productive Initiation by RNA Polymerase Involve DNA Scrunching
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November 2006 |
BIOCHEMISTRY: RNA Polymerase, a Scrunching Machine
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November 2006 |
Kinetics and mechanism of the interaction of Escherichia coli RNA polymerase with the λPR promoter
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July 1984 |
Analysis of RNA polymerase-promoter complex formation
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January 2009 |
Mechanism of Bacterial Transcription Initiation: RNA Polymerase - Promoter Binding, Isomerization to Initiation-Competent Open Complexes, and Initiation of RNA Synthesis
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journal
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October 2011 |
Kinetic Studies and Structural Models of the Association of E.coli σ70 RNA Polymerase with the λPR Promoter: Large Scale Conformational Changes in Forming the Kinetically Significant Intermediates
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June 2002 |
Structure and function of the initially transcribing RNA polymerase II–TFIIB complex
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November 2012 |
Topography of intermediates in transcription initiation of E.coli.
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July 1990 |
Evidence for a Tyrosine–Adenine Stacking Interaction and for a Short-lived Open Intermediate Subsequent to Initial Binding of Escherichia coli RNA Polymerase to Promoter DNA
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January 2009 |
Super-resolution biomolecular crystallography with low-resolution data
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April 2010 |
Anatomy of Escherichia coli σ 70 promoters
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December 2006 |
Escherichia coli σ 70 senses sequence and conformation of the promoter spacer region
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March 2011 |
Toward the structural genomics of complexes: Crystal structure of a PE/PPE protein complex from Mycobacterium tuberculosis
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May 2006 |
Different Roles for Basic and Aromatic Amino Acids in Conserved Region 2 of Escherichia coli ς 70 in the Nucleation and Maintenance of the Single-stranded DNA Bubble in Open RNA Polymerase-Promoter Complexes
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July 2001 |
Crystal structure of a bacterial RNA polymerase holoenzyme at 2.6 Å resolution
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May 2002 |
Structural basis for transcription elongation by bacterial RNA polymerase
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June 2007 |
Changes in conserved region 2 of Escherichia coli σ70 affecting promoter recognition
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September 1990 |
Damage Detection and Base Flipping in Direct DNA Alkylation Repair
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February 2009 |
Duplex interrogation by a direct DNA repair protein in search of base damage
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June 2012 |
A new basal promoter element recognized by RNA polymerase core enzyme: Novel class of bacterial promoters
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July 2011 |
Structural Basis of Transcription Initiation
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October 2012 |
Crystal Structures of the E. coli Transcription Initiation Complexes with a Complete Bubble
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May 2015 |
Conformational exchange in the potassium channel blocker ShK
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December 2019 |
PHENIX: a comprehensive Python-based system for macromolecular structure solution.
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January 2010 |