4.5 Article

Structural basis of transcription inhibition by α-amanitin and implications for RNA polymerase II translocation

Related references

Note: Only part of the references are listed.
Article Biochemistry & Molecular Biology

Mechanism of transcriptional stalling at cisplatin-damaged DNA

Gerke E. Damsma et al.

NATURE STRUCTURAL & MOLECULAR BIOLOGY (2007)

Article Biochemistry & Molecular Biology

A central role of the RNA polymerase trigger loop in active-site rearrangement during transcriptional pausing

Innokenti Toulokhonov et al.

MOLECULAR CELL (2007)

Article Biochemistry & Molecular Biology

Multisubunit RNA polymerases melt only a single DNA base pair downstream of the active site

Ekaterina Kashkina et al.

JOURNAL OF BIOLOGICAL CHEMISTRY (2007)

Article Multidisciplinary Sciences

Structural basis for transcription elongation by bacterial RNA polymerase

Dmitry G. Vassylyev et al.

NATURE (2007)

Article Multidisciplinary Sciences

Structural basis for substrate loading in bacterial RNA polymerase

Dmitry G. Vassylyev et al.

NATURE (2007)

Article Multidisciplinary Sciences

Backtracking determines the force sensitivity of RNAP II in a factor-dependent manner

Eric A. Galburt et al.

NATURE (2007)

Article Multidisciplinary Sciences

CPD damage recognition by transcribing RNA polymerase II

Florian Brueckner et al.

SCIENCE (2007)

Article Biochemical Research Methods

Version 1.2 of the Crystallography and NMR system

Axel T. Brunger

NATURE PROTOCOLS (2007)

Article Instruments & Instrumentation

The PILATUS 1M detector

C Broennimann et al.

JOURNAL OF SYNCHROTRON RADIATION (2006)

Article Multidisciplinary Sciences

Direct observation of base-pair stepping by RNA polymerase

EA Abbondanzieri et al.

NATURE (2005)

Article Biochemical Research Methods

Likelihood-enhanced fast translation functions

AJ McCoy et al.

ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY (2005)

Article Biochemistry & Molecular Biology

Structures of complete RNA polymerase II and its subcomplex, Rpb4/7

KJ Armache et al.

JOURNAL OF BIOLOGICAL CHEMISTRY (2005)

Article Biochemistry & Molecular Biology

Structural, functional, and genetic analysis of sorangicin inhibition of bacterial RNA polymerase

EA Campbell et al.

EMBO JOURNAL (2005)

Article Biochemistry & Molecular Biology

A ratchet mechanism of transcription elongation and its control

G Bar-Nahum et al.

Article Biochemistry & Molecular Biology

Structural basis for substrate selection by T7 RNA polymerase

D Temiakov et al.

Article Biochemistry & Molecular Biology

Complete RNA polymerase II elongation complex structure and its interactions with NTP and TFIIS

H Kettenberger et al.

MOLECULAR CELL (2004)

Article Biochemical Research Methods

Coot:: model-building tools for molecular graphics

P Emsley et al.

ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY (2004)

Article Biochemistry & Molecular Biology

α-amanitin blocks translocation by human RNA polymerase II

XQ Gong et al.

JOURNAL OF BIOLOGICAL CHEMISTRY (2004)

Article Multidisciplinary Sciences

Architecture of initiation-competent 12-subunit RNA polymerase II

KJ Armache et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2003)

Article Biochemistry & Molecular Biology

Swing-gate model of nucleotide entry into the RNA polymerase active center

V Epshtein et al.

MOLECULAR CELL (2002)

Review Biochemistry & Molecular Biology

Common structural features of nucleic acid polymerases

P Cramer

BIOESSAYS (2002)

Article Multidisciplinary Sciences

Crystal structure of a bacterial RNA polymerase holoenzyme at 2.6 Å resolution

DG Vassylyev et al.

NATURE (2002)

Article Multidisciplinary Sciences

Structural basis of transcription:: α-Amanitin-RNA polymerase II cocrystal at 2.8 A resolution

DA Bushnell et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2002)

Article Multidisciplinary Sciences

Structural basis of transcription:: RNA polymerase II at 2.8 Ångstrom resolution

P Cramer et al.

SCIENCE (2001)