RNA polymerase II (RNAP II) transcription and pre-mRNA 3' end formation are linked through physical and functional interactions. We describe here a highly efficient yeast in vitro system that reproduces both transcription and 3' end formation in a single reaction. The system is based on simple whole-cell extracts that were supplemented with a hybrid Gal4-VP16 transcriptional activator and supercoiled plasmid DNA templates encoding G-less cassette reporters. We found that the coupling of transcription and processing in vitro enhanced pre-mRNA 3' end formation and reproduced requirements for poly(A) signals and polyadenylation factors. Unexpectedly, however, we show that in vitro transcripts lacked m⁷G-caps. Reconstitution experiments with CF...
Ammonium sulfate fractionation of a Saccharomyces cerevisiae whole-cell extract yielded a preparatio...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3' end formation are linked through physical ...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3\u27 end formation are linked through ...
Termination of transcription by RNA polymerase II requires two distinct processes: The formation of ...
AbstractTermination of transcription by RNA polymerase II requires two distinct processes: The forma...
A major focus of my studies is to understand how mRNA transcription is functionally interconnected, ...
The direct association between messenger RNA (mRNA) 3'-end processing and the termination of transcr...
International audienceThe direct association between messenger RNA (mRNA) 3'-end processing and the ...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
Both RNA polymerase I and II (Pol I and Pol II) in budding yeast employ a functionally homologous "t...
At the end of protein-coding genes, RNA polymerase (Pol) II undergoes a concerted transition that in...
We have investigated the mechanism by which transcription accelerates cleavage and polyadenylation i...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
Ammonium sulfate fractionation of a Saccharomyces cerevisiae whole-cell extract yielded a preparatio...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3' end formation are linked through physical ...
RNA polymerase II (RNAP II) transcription and pre-mRNA 3\u27 end formation are linked through ...
Termination of transcription by RNA polymerase II requires two distinct processes: The formation of ...
AbstractTermination of transcription by RNA polymerase II requires two distinct processes: The forma...
A major focus of my studies is to understand how mRNA transcription is functionally interconnected, ...
The direct association between messenger RNA (mRNA) 3'-end processing and the termination of transcr...
International audienceThe direct association between messenger RNA (mRNA) 3'-end processing and the ...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
Both RNA polymerase I and II (Pol I and Pol II) in budding yeast employ a functionally homologous "t...
At the end of protein-coding genes, RNA polymerase (Pol) II undergoes a concerted transition that in...
We have investigated the mechanism by which transcription accelerates cleavage and polyadenylation i...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
Ammonium sulfate fractionation of a Saccharomyces cerevisiae whole-cell extract yielded a preparatio...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...
In a screen to identify genes required for mRNA export in Saccharomyces cerevisiae, we isolated an a...