We have investigated the mechanism by which transcription accelerates cleavage and polyadenylation in vitro. By using a coupled transcription-processing system, we show that rapid and efficient 3\u27 end processing occurs in the absence of crowding agents like polyvinyl alcohol. The continuity of the RNA from the poly(A) signal down to the polymerase is critical to this processing. If this tether is cut with DNA oligonucleotides and RNaseH during transcription, the efficiency of processing is drastically reduced. The polymerase is known to be an integral part of the cleavage and polyadenylation apparatus. RNA polymerase II pull-down and immobilized template experiments suggest that the role of the tether is to hold the poly(A) signal close ...
It is widely assumed that active RNA polymerases track along their templates to produce a transcript...
We have used EM visualization of active genes on plasmid vectors in Xenopus oocyte nuclei to investi...
The poly(A) tail of influenza virus mRNAs is synthesized by the viral RNA polymerase by reiterative ...
Termination of pre-mRNA transcription by RNA polymerase II occurs in two steps: a decrease of elonga...
A major focus of my studies is to understand how mRNA transcription is functionally interconnected, ...
Transcription termination of nearly all protein-coding genes in mammals requires 3’ end processing b...
RNA Polymerase II (Pol II) is responsible for transcribing all protein coding genes and some non-cod...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3' end formation are linked through physical ...
AbstractRecent studies have uncovered new connections between the enzymes of mRNA 3′ end processing ...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
We have developed a coupled in vitro transcription-polyadenylation system to investigate RNA polymer...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
The life cycle of RNA begins with transcription and ends upon degradation; in between are several pr...
During transcription elongation, RNA polymerase has been assumed to attain equilibrium between pre- ...
Transcriptional termination of mammalian RNA polymerase II (Pol II) requires a poly(A) (pA) signal a...
It is widely assumed that active RNA polymerases track along their templates to produce a transcript...
We have used EM visualization of active genes on plasmid vectors in Xenopus oocyte nuclei to investi...
The poly(A) tail of influenza virus mRNAs is synthesized by the viral RNA polymerase by reiterative ...
Termination of pre-mRNA transcription by RNA polymerase II occurs in two steps: a decrease of elonga...
A major focus of my studies is to understand how mRNA transcription is functionally interconnected, ...
Transcription termination of nearly all protein-coding genes in mammals requires 3’ end processing b...
RNA Polymerase II (Pol II) is responsible for transcribing all protein coding genes and some non-cod...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3' end formation are linked through physical ...
AbstractRecent studies have uncovered new connections between the enzymes of mRNA 3′ end processing ...
We show that RNA polymerase (Pol) II prevents erroneous transcription in vitro with different strate...
We have developed a coupled in vitro transcription-polyadenylation system to investigate RNA polymer...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
The life cycle of RNA begins with transcription and ends upon degradation; in between are several pr...
During transcription elongation, RNA polymerase has been assumed to attain equilibrium between pre- ...
Transcriptional termination of mammalian RNA polymerase II (Pol II) requires a poly(A) (pA) signal a...
It is widely assumed that active RNA polymerases track along their templates to produce a transcript...
We have used EM visualization of active genes on plasmid vectors in Xenopus oocyte nuclei to investi...
The poly(A) tail of influenza virus mRNAs is synthesized by the viral RNA polymerase by reiterative ...