New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mechanistic analysis of the eukaryotic mRNA transcription cycle. Crystallographic models of the complete Pol II, together with new biochemical and electron microscopic data, give insights into transcription initiation. The first X-ray analysis of a Pol II complex with a transcription factor, the elongation factor TFIIS, supports the idea that the polymerase has a ‘tunable’ active site that switches between mRNA synthesis and cleavage. The new studies also show that domains of transcription factors can enter polymerase openings, to modulate function during transcription
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
RNA polymerase (Pol) II produces messenger RNA during transcription of protein-coding genes in all e...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Transcription of eukaryotic protein-coding genes commences with the assembly of a conserved initiati...
RNA polymerase II (Pol II) is the eukaryotic enzyme that is responsible for transcribing all protein...
RNA polymerase II (Pol II) is the eukaryotic enzyme that is responsible for transcribing all protein...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
The eukaryotic RNA polymerases Pol I, Pol II, and Pol III are the central multiprotein machines that...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
AbstractEssential components of the eukaryotic transcription apparatus include RNA polymerase II, a ...
RNA polymerase (Pol) II produces messenger RNA during transcription of protein-coding genes in all e...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
RNA polymerase (Pol) II produces messenger RNA during transcription of protein-coding genes in all e...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Transcription of eukaryotic protein-coding genes commences with the assembly of a conserved initiati...
RNA polymerase II (Pol II) is the eukaryotic enzyme that is responsible for transcribing all protein...
RNA polymerase II (Pol II) is the eukaryotic enzyme that is responsible for transcribing all protein...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
The eukaryotic RNA polymerases Pol I, Pol II, and Pol III are the central multiprotein machines that...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
AbstractEssential components of the eukaryotic transcription apparatus include RNA polymerase II, a ...
RNA polymerase (Pol) II produces messenger RNA during transcription of protein-coding genes in all e...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
RNA polymerase (Pol) II produces messenger RNA during transcription of protein-coding genes in all e...