Using fluorescence resonance energy transfer, we show that, in the majority of transcription complexes, sigma(70) is not released from RNA polymerase upon transition from initiation to elongation, but, instead, remains associated with RNA polymerase and translocates with RNA polymerase. The results argue against the presumption that there are necessary subunit-composition differences, and corresponding necessary mechanistic differences, in initiation and elongation. The methods of this report should be generalizable to monitor movement of any molecule relative to any nucleic acid
Single-pair fluorescence resonance energy transfer was used to track RNA exiting from RNA polymerase...
During transcription elongation, RNA polymerase has been assumed to attain equilibrium between pre- ...
Despite extensive studies on transcription mechanisms, it is unknown how termination complexes are d...
AbstractUsing fluorescence resonance energy transfer, we show that, in the majority of transcription...
AbstractUsing fluorescence resonance energy transfer, we show that, in the majority of transcription...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
Although structurally more simple, T7 RNA polymerase shares functional similarities with the more co...
AbstractKinetic, structural, and single-molecule transcription measurements suggest that RNA polymer...
Although structurally more simple, T7 RNA polymerase shares functional similarities with the more co...
Transcription of genomic DNA of all organisms is carried out by members of the multi-subunit RNA pol...
Despite extensive studies on transcription mechanisms, it is unknown how termination complexes are d...
AbstractThe RNA polymerase (RNAP) of bacteriophage T7 is a single subunit enzyme that can transcribe...
International audienceTime-resolved laser UV irradiation and controlled proteolysis have been used t...
Single-pair fluorescence resonance energy transfer was used to track RNA exiting from RNA polymerase...
During transcription elongation, RNA polymerase has been assumed to attain equilibrium between pre- ...
Despite extensive studies on transcription mechanisms, it is unknown how termination complexes are d...
AbstractUsing fluorescence resonance energy transfer, we show that, in the majority of transcription...
AbstractUsing fluorescence resonance energy transfer, we show that, in the majority of transcription...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
We report a single-molecule assay that defines, simultaneously, the translocational position of a pr...
Although structurally more simple, T7 RNA polymerase shares functional similarities with the more co...
AbstractKinetic, structural, and single-molecule transcription measurements suggest that RNA polymer...
Although structurally more simple, T7 RNA polymerase shares functional similarities with the more co...
Transcription of genomic DNA of all organisms is carried out by members of the multi-subunit RNA pol...
Despite extensive studies on transcription mechanisms, it is unknown how termination complexes are d...
AbstractThe RNA polymerase (RNAP) of bacteriophage T7 is a single subunit enzyme that can transcribe...
International audienceTime-resolved laser UV irradiation and controlled proteolysis have been used t...
Single-pair fluorescence resonance energy transfer was used to track RNA exiting from RNA polymerase...
During transcription elongation, RNA polymerase has been assumed to attain equilibrium between pre- ...
Despite extensive studies on transcription mechanisms, it is unknown how termination complexes are d...