Transcription termination of RNA polymerase II (Pol II) on protein-coding genes in S. cerevisiae relies on pA site recognition by 3' end processing factors. Here we demonstrate the existence of two alternative termination mechanisms that rescue polymerases failing to disengage from the template at pA sites. One of these fail-safe mechanisms is mediated by the NRD complex, similar to termination of short noncoding genes. The other termination mechanism is mediated by Rnt1 cleavage of the nascent transcript. Both fail-safe termination mechanisms trigger degradation of readthrough transcripts by the exosome. However, Rnt1-mediated termination can also enhance the usage of weak pA signals and thereby generate functional mRNA. We propose that th...
<div><p>Transcriptome studies on eukaryotic cells have revealed an unexpected abundance and diversit...
International audienceTranscription termination delimits transcription units but also plays importan...
Termination of transcription by RNA polymerase II requires two distinct processes: The formation of ...
Both RNA polymerase I and II (Pol I and Pol II) in budding yeast employ a functionally homologous "t...
Ribosomal RNA, transcribed by RNA polymerase (Pol) I, accounts for most cellular RNA. Since Pol I tr...
Yeast RNA polymerase II (Pol II) terminates transcription of coding transcripts through the polyaden...
Transcriptional termination of mammalian RNA polymerase II (Pol II) requires a poly(A) (pA) signal a...
RNA polymerase III (RNAPIII) synthesizes essential and abundant noncoding RNAs such as transfer RNAs...
Abstract RNA polymerase III (RNAPIII) synthesizes essential and abundant non-coding RNAs such as tRN...
Terminating transcription is a highly intricate process for mammalian protein-coding genes. First, t...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
At the end of protein-coding genes, RNA polymerase (Pol) II undergoes a concerted transition that in...
RNA polymerase II (Pol II) transcription termination by the Nrd1p-Nab3p-Sen1p (NNS) pathway is criti...
Termination of transcription is an important, but poorly understood, cellular process. RNA polymeras...
International audienceTranscription termination occurs when the polymerase is released after a trans...
<div><p>Transcriptome studies on eukaryotic cells have revealed an unexpected abundance and diversit...
International audienceTranscription termination delimits transcription units but also plays importan...
Termination of transcription by RNA polymerase II requires two distinct processes: The formation of ...
Both RNA polymerase I and II (Pol I and Pol II) in budding yeast employ a functionally homologous "t...
Ribosomal RNA, transcribed by RNA polymerase (Pol) I, accounts for most cellular RNA. Since Pol I tr...
Yeast RNA polymerase II (Pol II) terminates transcription of coding transcripts through the polyaden...
Transcriptional termination of mammalian RNA polymerase II (Pol II) requires a poly(A) (pA) signal a...
RNA polymerase III (RNAPIII) synthesizes essential and abundant noncoding RNAs such as transfer RNAs...
Abstract RNA polymerase III (RNAPIII) synthesizes essential and abundant non-coding RNAs such as tRN...
Terminating transcription is a highly intricate process for mammalian protein-coding genes. First, t...
Transcription 'run-on' (TRO) analysis using permeabilized yeast cells indicates that transcription t...
At the end of protein-coding genes, RNA polymerase (Pol) II undergoes a concerted transition that in...
RNA polymerase II (Pol II) transcription termination by the Nrd1p-Nab3p-Sen1p (NNS) pathway is criti...
Termination of transcription is an important, but poorly understood, cellular process. RNA polymeras...
International audienceTranscription termination occurs when the polymerase is released after a trans...
<div><p>Transcriptome studies on eukaryotic cells have revealed an unexpected abundance and diversit...
International audienceTranscription termination delimits transcription units but also plays importan...
Termination of transcription by RNA polymerase II requires two distinct processes: The formation of ...