AbstractTranscription factors IIB (TFIIB) and IIE (TFIIE) bound to RNA polymerase II have been revealed by electron crystallography in projection at 15.7 Å resolution. The results lead to simple hypotheses for the roles of these factors in the initiation of transcription. TFIIB is suggested to define the distance from TATA box to transcription start site by bringing TATA DNA in contact with polymerase at that distance from the active center of the enzyme. TFIIE is suggested to participate in a key conformational switch occurring at the active center upon polymerase–DNA interaction
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
During transcription initiation at promoters of protein-coding genes, RNA polymerase (Pol) II assemb...
Eukaryotic transcription initiation requires the assembly of general transcription factors into a pr...
AbstractTranscription factors IIB (TFIIB) and IIE (TFIIE) bound to RNA polymerase II have been revea...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Recent X-ray crystallographic studies of Pol II in complex with the general transcription factor (GT...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
AbstractBiochemical probes positioned on the surface of the general transcription factor TFIIB were ...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
To investigate the function and architecture of the open complex state of RNA polymerase II (Pol II)...
Transcription initiation requires the assembly of a preinitiation complex (PIC), which is nucleated ...
Higher‐order multi‐protein complexes such as RNA polymerase II (Pol II) complexes with transcription...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
During transcription initiation at promoters of protein-coding genes, RNA polymerase (Pol) II assemb...
Eukaryotic transcription initiation requires the assembly of general transcription factors into a pr...
AbstractTranscription factors IIB (TFIIB) and IIE (TFIIE) bound to RNA polymerase II have been revea...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Recent X-ray crystallographic studies of Pol II in complex with the general transcription factor (GT...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
AbstractBiochemical probes positioned on the surface of the general transcription factor TFIIB were ...
The general transcription factor (TF) IIB is required for RNA polymerase (Pol) II initiation and ext...
To investigate the function and architecture of the open complex state of RNA polymerase II (Pol II)...
Transcription initiation requires the assembly of a preinitiation complex (PIC), which is nucleated ...
Higher‐order multi‐protein complexes such as RNA polymerase II (Pol II) complexes with transcription...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
During transcription initiation at promoters of protein-coding genes, RNA polymerase (Pol) II assemb...
Eukaryotic transcription initiation requires the assembly of general transcription factors into a pr...