During gene transcription, the RNA polymerase (Pol) active center can catalyze RNA cleavage. This intrinsic cleavage activity is strong for Pol I and Pol III but very weak for Pol II. The reason for this difference is unclear because the active centers of the polymerases are virtually identical. Here we show that Pol II gains strong cleavage activity when the C-terminal zinc ribbon domain (C-ribbon) of subunit Rpb9 is replaced by its counterpart from the Pol III subunit C11. X-ray analysis shows that the C-ribbon has detached from its site on the Pol II surface and is mobile. Mutagenesis indicates that the C-ribbon transiently inserts into the Pol II pore to complement the active center. This mechanism is also used by transcription factor I...
RNA polymerase (Pol) I contains a 10-subunit catalytic core that is related to the core of Pol II an...
RNA polymerases I and II (Pol I and Pol II) are the eukaryotic enzymes that catalyze DNA-dependent s...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
During gene transcription, the RNA polymerase (Pol) active center can catalyze RNA cleavage. This in...
During gene transcription, RNA polymerase (Pol) II moves forwards along DNA and synthesizes messenge...
SummaryMultisubunit RNA polymerases (msRNAPs) exhibit high sequence and structural homology, especia...
The eukaryotic RNA polymerases Pol I, Pol II, and Pol III are the central multiprotein machines that...
RNA Polymerase II (Pol II) is responsible for transcribing all protein coding genes and some non-cod...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Multisubunit RNA polymerases (msRNAPs) exhibit high sequence and structural homology, especially wit...
Structures of a 10-subunit yeast RNA polymerase II have been derived from two crystal forms at 2.8 a...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
RNA polymerase (Pol) I contains a 10-subunit catalytic core that is related to the core of Pol II an...
RNA polymerases I and II (Pol I and Pol II) are the eukaryotic enzymes that catalyze DNA-dependent s...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
During gene transcription, the RNA polymerase (Pol) active center can catalyze RNA cleavage. This in...
During gene transcription, RNA polymerase (Pol) II moves forwards along DNA and synthesizes messenge...
SummaryMultisubunit RNA polymerases (msRNAPs) exhibit high sequence and structural homology, especia...
The eukaryotic RNA polymerases Pol I, Pol II, and Pol III are the central multiprotein machines that...
RNA Polymerase II (Pol II) is responsible for transcribing all protein coding genes and some non-cod...
The transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic nuclease ...
To initiate gene transcription, RNA polymerase II (Pol II) requires the transcription factor IIB (B)...
New structural studies of RNA polymerase II (Pol II) complexes mark the beginning of a detailed mech...
Multisubunit RNA polymerases (msRNAPs) exhibit high sequence and structural homology, especially wit...
Structures of a 10-subunit yeast RNA polymerase II have been derived from two crystal forms at 2.8 a...
AbstractThe transcription elongation factor TFIIS induces mRNA cleavage by enhancing the intrinsic n...
We have now completed an atomic crystallographic model of the 12-subunit yeast RNA polymerase II in ...
RNA polymerase (Pol) I contains a 10-subunit catalytic core that is related to the core of Pol II an...
RNA polymerases I and II (Pol I and Pol II) are the eukaryotic enzymes that catalyze DNA-dependent s...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...