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Nature, ISSN 0028-0836, 02/2015, Volume 518, Issue 7539, pp. 376 - 380
The conserved co-activator complex Mediator enables regulated transcription irntiation by RNA polymerase (Pol) II. Here we reconstitute an active 15-subunit... 
STRUCTURAL BASIS | TFIIB COMPLEX | MULTIDISCIPLINARY SCIENCES | CHEMICAL CROSS-LINKING | CRYO-EM | ELECTRON-MICROSCOPY | SACCHAROMYCES-CEREVISIAE | MIDDLE MODULE | MASS-SPECTROMETRY | TRANSCRIPTION PREINITIATION COMPLEX | HEAD MODULE | Phosphorylation | Transcription Factor TFIIB - metabolism | Mediator Complex - metabolism | Transcription Factor TFIIB - chemistry | Allosteric Regulation | RNA Polymerase II - ultrastructure | Saccharomyces cerevisiae - ultrastructure | Transcription Factor TFIIH - chemistry | RNA Polymerase II - metabolism | Protein Subunits - metabolism | Mediator Complex - chemistry | Mediator Complex - ultrastructure | Protein Stability | Transcription Initiation, Genetic | Binding Sites | RNA Polymerase II - chemistry | Protein Structure, Tertiary | Saccharomyces cerevisiae Proteins - ultrastructure | Models, Molecular | DNA - metabolism | Saccharomyces cerevisiae - chemistry | Cryoelectron Microscopy | DNA - chemistry | Saccharomyces cerevisiae Proteins - metabolism | Transcription Factor TFIIH - metabolism | Protein Subunits - chemistry | Enzyme Activation | Saccharomyces cerevisiae Proteins - chemistry | Physiological aspects | Protein research | Genetic transcription | Research | RNA polymerases | Transcription factors | Yeast | Microscopy | RNA polymerase | Kinases | Deoxyribonucleic acid--DNA | Index Medicus
Journal Article
Science, ISSN 0036-8075, 4/2012, Volume 336, Issue 6079, pp. 315 - 319
A detailed understanding of the mechanisms that underlie antibiotic killing is important for the derivation of new classes of antibiotics and clinically useful... 
RESEARCH ARTICLE | Antibiotics | Cell death | DNA | Fluorescence | Cytotoxicity | Oxidation | Nucleotides | Overproduction | Genetic mutation | Guanine nucleotides | MUTAGENESIS | PROTEIN | REPLICATION | MULTIDISCIPLINARY SCIENCES | ESCHERICHIA-COLI | DOUBLE-STRAND BREAKS | HYDROGEN-PEROXIDE | MECHANISMS | MUTT-TYPE ENZYME | DNA-POLYMERASES | DAMAGE | Guanine Nucleotides - metabolism | DNA, Bacterial - metabolism | Guanine - analogs & derivatives | Escherichia coli - drug effects | Pyrophosphatases - genetics | DNA Polymerase II - metabolism | DNA Breaks, Double-Stranded | DNA-Directed DNA Polymerase - genetics | Guanine - metabolism | Norfloxacin - pharmacology | Escherichia coli - metabolism | Ampicillin - pharmacology | Deoxyguanine Nucleotides - metabolism | DNA Polymerase beta - metabolism | DNA Polymerase I - genetics | DNA Polymerase II - genetics | DNA Polymerase beta - genetics | RNA, Bacterial - metabolism | DNA Glycosylases - metabolism | Oxidation-Reduction | DNA Glycosylases - genetics | Escherichia coli Proteins - metabolism | Hydroxyl Radical - metabolism | Microbial Viability | Kanamycin - pharmacology | Pyrophosphatases - metabolism | Escherichia coli - genetics | Models, Biological | Escherichia coli Proteins - genetics | Anti-Bacterial Agents - pharmacology | DNA-Directed DNA Polymerase - metabolism | DNA Polymerase I - metabolism | Physiological aspects | Oxidation-reduction reaction | Research | Health aspects | Guanine | Drug therapy | Index Medicus | Adjuvants
Journal Article
Journal Article
Science, ISSN 0036-8075, 07/2018, Volume 361, Issue 6400, pp. 412 - 415
Journal Article
Journal Article
Nature Structural and Molecular Biology, ISSN 1545-9993, 01/2014, Volume 21, Issue 1, pp. 49 - 55
DNA polymerase ɛ (Pol ɛ) is a high-fidelity polymerase that has been shown to participate in leading-strand synthesis during DNA replication in eukaryotic... 
Models, Molecular | Saccharomyces cerevisiae - enzymology | DNA Replication | Catalytic Domain | DNA Polymerase II - metabolism | DNA Polymerase II - chemistry | Index Medicus
Journal Article